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  • Books  (85)
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  • 1
    Series available for loan
    Series available for loan
    Tokyo : National Institute of Polar Research
    Associated volumes
    Call number: ZSP-592-14 ; ZSP-592-14(2.Ex.)
    In: Memoirs of National Institute of Polar Research
    Type of Medium: Series available for loan
    Pages: IV, 229 S. : Ill., graph. Darst., Kt.
    Series Statement: Memoirs of National Institute of Polar Research : Special Issue 14
    Language: English
    Location: AWI Reading room
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  • 2
    Call number: ZSP-553-1
    In: Meddelelser om Grønland
    Type of Medium: Monograph available for loan
    Pages: 24 S. : Ill., graph. Darst.
    ISBN: 8717025818
    ISSN: 0106-1046
    Series Statement: Meddelelser om Grønland : Geoscience 1
    Language: English
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  • 3
    Series available for loan
    Series available for loan
    Warszawa [u.a.] : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(B-4,2) / Regal 35
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 77 S.
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : B, Seismology 4 = 124
    Language: English
    Location: Magazine - must be ordered
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  • 4
    Series available for loan
    Series available for loan
    Warszawa [u.a.] : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(B-5,1) / Regal 35
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 63 S.
    ISBN: 8301020997
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : B, Seismology 5 = 145
    Language: English
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  • 5
    Series available for loan
    Series available for loan
    Warszawa [u.a.] : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(B-4,4) / Regal 34
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 161 S.
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : B, Seismology 4 = 124
    Language: English
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  • 6
    Series available for loan
    Series available for loan
    Warszawa : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(C-7) / Regal 35
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 248 S.
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : C, Geomagnetism 7 = 128
    Language: English
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  • 7
    Series available for loan
    Series available for loan
    Warszawa [u.a.] : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(B-7,3) / Regal 35
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 117 S.
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : B, Seismology 4 = 124
    Language: English
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  • 8
    Series available for loan
    Series available for loan
    Warszawa : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(C-8) / Regal 35
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 55 S.
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : C, Geomagnetism 8 = 133
    Language: English
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  • 9
    Series available for loan
    Series available for loan
    Warszawa : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(C-6) / Regal 35
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 266 S.
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : C, Geomagnetism 6 = 127
    Language: English
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  • 10
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(21)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: III, 57 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 21
    Language: English
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  • 11
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(23)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: III, 6 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 23
    Language: English
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  • 12
    Series available for loan
    Series available for loan
    Rockville Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(22)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: 15 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 22
    Language: English
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  • 13
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(17)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: 18 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 17
    Language: English
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  • 14
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(18)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: 16 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 18
    Language: English
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  • 15
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(16)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: 5 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 16
    Language: English
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  • 16
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0947(79-12)
    In: NOAA technical report
    Type of Medium: Series available for loan
    Pages: III, 42 S.
    Series Statement: NOAA Technical Report : NOS 79-12
    Language: English
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  • 17
    Series available for loan
    Series available for loan
    Bamberg : Meisenbach
    Associated volumes
    Call number: SR 90.1029(9)
    In: Veröffentlichungen des Instituts für Erdmessung
    Type of Medium: Series available for loan
    Pages: 47 S.
    Series Statement: Veröffentlichungen des Instituts für Erdmessung 9
    Language: German
    Location: Magazine - must be ordered
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  • 18
    Call number: SR 90.1029(4)
    In: Veröffentlichungen des Instituts für Erdmessung
    Type of Medium: Series available for loan
    Pages: 143 S.
    Series Statement: Veröffentlichungen des Instituts für Erdmessung 4
    Language: German
    Location: Magazine - must be ordered
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  • 19
    Series available for loan
    Series available for loan
    Bamberg : Meisenbach
    Associated volumes
    Call number: SR 90.1029(1)
    In: Veröffentlichungen des Instituts für Erdmessung
    Type of Medium: Series available for loan
    Pages: 122 S.
    Series Statement: Veröffentlichungen des Instituts für Erdmessung 1
    Language: German
    Location: Magazine - must be ordered
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  • 20
    Call number: SR 90.1025(41)
    In: Mitteilungen des Lohrmann-Observatoriums der Technischen Universität Dresden
    Type of Medium: Series available for loan
    Pages: S. 713-775
    Series Statement: Mitteilung des Lohrmann-Observatoriums der Technischen Universität Dresden 41
    Language: German
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  • 21
    Call number: SR 90.1025(46)
    In: Mitteilungen des Lohrmann-Observatoriums der Technischen Universität Dresden
    Type of Medium: Series available for loan
    Pages: S. 1089-1102
    Series Statement: Mitteilungen des Lohrmann-Observatoriums der Technischen Universität Dresden 46
    Language: German
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  • 22
    Call number: SR 90.1032(39)
    In: Veröffentlichungen der Bayerischen Kommission für die Internationale Erdmessung der Bayerischen Akademie der Wissenschaften
    Type of Medium: Series available for loan
    Pages: 150 S.
    ISBN: 3769697820
    Series Statement: Veröffentlichungen der Bayerischen Kommission für die Internationale Erdmessung der Bayerischen Akademie der Wissenschaften : Astronomisch-Geodätische Arbeiten 39
    Language: German
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  • 23
    Series available for loan
    Series available for loan
    Bamberg : Meisenbach
    Associated volumes
    Call number: SR 90.1029(8)
    In: Veröffentlichungen des Instituts für Erdmessung
    Type of Medium: Series available for loan
    Pages: 84 S.
    Series Statement: Veröffentlichungen des Instituts für Erdmessung 8
    Language: German
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  • 24
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(19)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: II, 13 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 19
    Language: English
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  • 25
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(20)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: III, 22 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 20
    Language: English
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  • 26
    Series available for loan
    Series available for loan
    Bamberg : Meisenbach
    Associated volumes
    Call number: SR 90.1029(3)
    In: Veröffentlichungen des Instituts für Erdmessung
    Type of Medium: Series available for loan
    Pages: 77 S.
    Series Statement: Veröffentlichungen des Instituts für Erdmessung 3
    Language: German
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  • 27
    Monograph available for loan
    Monograph available for loan
    Hoboken, NJ : Wiley
    Call number: AWI A14-15-0008
    Description / Table of Contents: The cryosphere, that region of the world where water is temporarily or permanently frozen, plays a crucial role on our planet. Recent developments in remote sensing techniques, and the acquisition of new data sets, have resulted in significant advances in our understanding of all components of the cryosphere and its processes. This book, based on contributions from 40 leading experts, offers a comprehensive and authoritative overview of the methods, techniques and recent advances in applications of remote sensing of the cryosphere. Examples of the topics covered include: snow extent, depth, grain size and impurities; surface and subsurface melting; glaciers; accumulation over the Greenland and Antarctica ice sheets; ice thickness and velocities; gravimetric measurements from space; sea, lake and river ice; frozen ground and permafrost; fieldwork activities; recent and future cryosphere-oriented missions and experiments.
    Type of Medium: Monograph available for loan
    Pages: 408 Seiten , Illustrationen
    Edition: 1. edition
    ISBN: 9781118368855
    Series Statement: The cryosphere science series
    Language: English
    Note: Table of Contents: List of contributors. - Cryosphere Science: Series Preface. - Preface. - Acknowledgments. - About the companion website. - 1 Remote sensing and the cryosphere. - 1.1 Introduction. - 1.2 Remote sensing. - 1.2.1 The electromagnetic spectrum and blackbody radiation. - 1.2.2 Passive systems. - 1.2.3 Active systems. - 1.3 The cryosphere. - References. - 2 Electromagnetic properties of components of the cryosphere. - 2.1 Electromagnetic properties of snow. - 2.1.1 Visible/near-infrared and thermal infrared. - 2.1.2 Microwave region. - 2.2 Electromagnetic properties of sea ice. - 2.2.1 Visible/near-infrared and thermal infrared. - 2.2.2 Microwave region. - 2.3 Electromagnetic properties of freshwater ice. - 2.4 Electromagnetic properties of glaciers and ice sheets. - 2.4.1 Visible/near-infrared and thermal infrared. - 2.4.2 Microwave region. - 2.5 Electromagnetic properties of frozen soil. - 2.5.1 Visible/near-infrared and thermal infrared. - 2.5.2 Microwave region. - References. - Acronyms. - Websites cited. - 3 Remote sensing of snow extent. - 3.1 lntroduction. - 3.2 Visible/near-infrared snow products. - 3.2.1 The normalized difference snow index (NDSI). - 3.3 Passive microwave products. - 3.4 Blended VNIR/PM products. - 3.5 Satellite snow extent as input to hydrological models. - 3.6 Concluding remarks. - Acknowledgments. - References. - Acronyms. - Websites cited. - 4 Remote sensing of snow albedo, grain size, and pollution from space. - 4.1 Introduction. - 4.2 Forward modeling. - 4.3 Local optical properties of a snow layer. - 4.4 Inverse problem. - 4.5 Pitfalls of retrievals. - 4.6 Conclusions. - Acknowledgments. - References. - Acronyms. - Websites cited. - 5 Remote sensing of snow depth and snow water equivalent. - 5.1 Introduction. - 5.2 Photogrammetry. - 5.3 LiDAR. - 5.4 Gamma radiation. - 5.5 Gravity data. - 5.6 Passive microwave data. - 5.7 Active microwave data. - 5.8 Conclusions. - References. - Acronyms. - Websites cited. - 6 Remote sensing of melting snow and ice. - 6.1 Introduction. - 6.2 General considerations on optical/thermal and microwave sensors and techniques for remote sensing of melting. - 6.2.1 Optical and thermal sensors. - 6.2.2 Microwave sensors. - 6.2.3 Electromagnetic properties of dry and wet snow. - 6.3 Remote sensing of melting over land. - 6.4 Remote sensing of melting over Greenland. - 6.4.1 Thermal infrared sensors. - 6.4.2 Microwave sensors. - 6.5 Remote sensing of melting over Antarctica. - 6.6 Conclusions. - References. - Acronyms. - 7 Remote sensing of glaciers. - 7.1 Introduction. - 7.2 Fundamentals. - 7.3 Satellite instruments for glacier research. - 7.4 Methods. - 7.4.1 Image classification for glacier mapping. - 7.4.2 Mapping debris-covered glaciers. - 7.4.3 Glacier mapping with SAR data. - 7.4.4 Assessing glacier changes. - 7.4.5 Area and length changes. - 7.4.6 Volumetrie glacier changes. - 7.4.7 Glacier velocity. - 7.5 Glaciers of the Greenland ice sheet. - 7.5.1 Surface elevation. - 7.5.2 Glacier extent. - 7.5.3 Glacier dynamics. - 7.6 Summary. - References. - Acronyms. - Websites cited. - 8 Remote sensing of accumulation over the Greenland and Antarctic ice sheets. - 8.1 Introduction to accumulation. - 8.2 Spaceborne methods for determining accumulation over ice sheets. - 8.2.1 Microwave remote sensing. - 8.2.2 Other remote sensing techniques and combined methods. - 8.3 Airborne and ground-based measurements of accumulation. - 8.3.1 Ground-based. - 8.3.2 Airborne. - 8.4 Modeling of accumulation. - 8.5 The future for remote sensing of accumulation. - 8.6 Conclusions. - References. - Acronyms. - Website cited. - 9 Remote sensing of ice thickness and surface velocity. - 9.1 Introduction. - 9.1.1 Electrical properties of glacial ice. - 9.2 Radar principles. - 9.2.1 Radar sounder. - 9.2.2 Radar equation. - 9.3 Pulse compression. - 9.4 Antennas. - 9.5 Example results. - 9.6 SAR and array processing. - 9.7 SAR Interferometry. - 9. 7.1 Introduction. - 9.7.2 Basic theory. - 9.7.3 Practical considerations of InSAR systems. - 9.7.4 Application of InSAR to Cryosphere remote sensing. - 9.8 Conclusions. - References. - Acronyms. - 10 Gravimetry measurements from space. - 10.1 Introduction. - 10.2 Observing the Earth's gravity field with inter-satellite ranging. - 10.3 Surface mass variability from GRACE. - 10.4 Results. - 10.5 Conclusions. - References. - Acronyms. - 11 Remote sensing of sea ice. - 11.1 Introduction. - 11.2 Sea ice concentration and extent. - 11.2.1 Passive microwave radiometers. - 11.2.2 Active microwave - scatterometry and radar. - 11.2.3 Visible and infrared. - 11.2.4 Operational sea ice analyses. - 11.3 Sea ice drift. - 11.4 Sea ice thickness and age, and snow depth. - 11.4.1 Altimetric thickness estimates. - 11.4.2 Radiometric thickness estimates. - 11.4.3 Sea ice age estimates as a proxy for ice thickness. - 11.5 Sea ice melt onset and freeze-up, albedo, melt pond fraction and surface temperature. - 11.5.1 Melt onset and freeze-up. - 11.5.2 Sea ice albedo and melt pond fraction. - 11.5.3 Sea ice surface temperature. - 11.6 Summary, challenges and the road ahead. - References. - Acronyms. - Website cited. - 12 Remote sensing of lake and river ice. - 12.1 Introduction. - 12.2 Remote sensing of lake ice. - 12.2.1 Ice concentration, extent and phenology. - 12.2.2 Ice types. - 12.2.3 Ice thickness and snow on ice. - 12.2.4 Snow/ice surface temperature. - 12.2.5 Floating and grounded ice: the special case of shallow Arctic/sub-Arctic lakes. - 12.3 Remote sensing of river ice. - 12.3.1 Ice extent and phenology. - 12.3.2 lce types, ice jams and flooded areas. - 12.3.3 Ice thickness. - 12.3.4 Surface flow velocities. - 12.3.5 Incorporating SAR-derived ice information into a GIS-based system in support of river-flow modeling and flood forecasting. - 12.4 Conclusions and outlook. - Acknowledgments. - References. - Acronyms. - Websites cited. - 13 Remote sensing of permafrost and frozen ground. - 13.1 Permafrost - an essential climate variable of the "Global Climate Observing System". - 13.2 Mountain permafrost. - 13.2.1 Remote sensing of surface features and permafrost landforms. - 13.2.2 Generation of digital elevation models. - 13.2.3 Terrain elevation change and displacement. - 13.3 Lowland permafrost - identification and mapping of surface features. - 13.3.1 Land cover and vegetation. - 13.3.2 Permafrost landforms. - 13.3.3 Landforms and processes indicating permafrost degradation. - 13.4 Lowland permafrost - remote sensing of physical variables related to the thermal permafrost state. - 13.4.1 Land surface temperature through thermal remote sensing. - 13.4.2 Freeze-thaw state of the surface soil through microwave remote sensing. - 13.4.3 Permafrost mapping with airborne electromagnetic surveys. - 13.4.4 Regional surface deformation through radar interferometry. - 13.4.5 A gravimetric signal of permafrost thaw?. - 13.5 Outlook - remote sensing data and permafrost models. - References. - Acronyms. - 14 Field measurements for remote sensing of the cryosphere. - 14.1 Introduction. - 14.2 Physical properties of interest. - 14.2.1 Surface properties. - 14.2.2 Sub-surface properties. - 14.3 Standard techniques for direct measurements of physical properties. - 14.3.1 Topography. - 14.3.2 Snow depth. - 14.3.3 Snow water equivalent and density. - 14.3.4 Temperature. - 14.3.5 Stratigraphy. - 14.3.6 Sea ice depth and ice thickness. - 14.4 New techniques for high spatial resolution measurements. - 14.4.1 Topography. - 14.4.2 Surface properties. - 14.4.3 Sub-surface properties. - 14.5 Simulating airborne and spaceborne observations from the ground. - 14.5.1 Active microwave. - 14.5.2 Passive microwave. - 14.6 Sampling strategies for remote sensing field campaigns: concepts and examples. - 14.6.1 Ice sheet campaigns. - 14.6.2 Seasonal snow campaigns. - 14.6.3 Sea ice campaigns. - 14.7 Conclusions. - References. - Acronyms. - Websites cited. - 15 Remote sensing missions and the cryosphere. - 15.1 In
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  • 28
    Monograph available for loan
    Monograph available for loan
    Tokyo : National Institute for Polar Research
    Call number: AWI P5-15-0033
    Type of Medium: Monograph available for loan
    Pages: 26 S. : Ill., graph. Darst., Kt.
    Edition: 2014, rev. March 2015
    Language: English
    Note: Contents: 1. Introduction. - (1) The purposes of the long-term plan report. - (2) The background and particulars of this report. - (3) Contents of this report. - 2.Changes in the Arctic environment to date and in the near future. - 3. History of Arctic environmental research. - 4. Abstracts of all themes. - (1) Elucidation of abrupt environmental change in the Arctic associated with the on-going global warming. - Theme 1: Arctic amplification of global warming. - Theme 2: Mechanisms and influence of sea ice decline. - Theme 3: Biogeochemical cycles and ecosystem changes. - Theme 4: Ice sheet, glaciers, permafrost, snowfall, snow cover and hydrological cycle. - Theme 5: Interactions between the Arctic and the entire earth. - Theme 6: Predicting future environmental conditions of the Arctic based on paleoenvironmental records. - Theme 7: Effects of the Arctic environment on human society. - (2) Elucidation of environmental change concerning biodiversity. - Theme 8: Effects on terrestrial ecosystems and biodiversity. - Theme 9: Influence on marine ecosystem and biodiversity. - (3) Broad and important subjects on the Arctic environment. - Theme 10: Geospace environment. - Theme 11: Interaction of surface environment change with solid earth. - Theme 12: Basic understanding on formation and transition process of permafrost. - (4) Development of methods enabling breakthroughs in environmental research. - Theme A: Sustainable seamless monitoring. - Theme B: Earth system-modeling for inter-disciplinary research. - Theme C: Data assimilation to connect monitoring and modeling. - 5. Improvement of research foundation. - Authors and reviewers.
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  • 29
    Monograph available for loan
    Monograph available for loan
    Dordrecht : Springer
    Call number: AWI A11-15-0048
    Description / Table of Contents: This textbook aims to be a one stop shop for those interested in aerosols and their impact on the climate system. It starts with some fundamentals on atmospheric aerosols, atmospheric radiation and cloud physics, then goes into techniques used for in-situ and remote sensing measurements of aerosols, data assimilation, and discusses aerosol-radiation interactions, aersol-cloud interactions and the multiple impacts of aerosols on the climate system. The book aims to engage those interested in aerosols and their impacts on the climate system: graduate and PhD students, but also post-doctorate fellows who are new to the field or would like to broaden their knowledge. The book includes exercises at the end of most chapters. Atmospheric aerosols are small (microscopic) particles in suspension in the atmosphere, which play multiple roles in the climate system. They interact with the energy budget through scattering and absorption of solar and terrestrial radiation. They also serve as cloud condensation and ice nuclei with impacts on the formation, evolution and properties of clouds. Finally aerosols also interact with some biogeochemical cycles. Anthropogenic emissions of aerosols are responsible for a cooling effect that has masked part of the warming due to the increased greenhouse effect since pre-industrial time. Natural aerosols also respond to climate changes as shown by observations of past climates and modelling of the future climate.
    Type of Medium: Monograph available for loan
    Pages: XVII, 311 Seiten , Illustrationen
    ISBN: 9789401796484
    Uniform Title: Aérosols atmosphériques : propriétés et impacts climatiques
    Language: English
    Note: Contents: 1 General Introduction. - 1.1 The Climate System. - 1.2 The Atmosphere. - 1.3 Energy Budget and Atmospheric Composition. - 1.4 The Water Cycle. - 1.5 Aerosols and Climate Change. - 1.6 Outline of this Textbook. - References. - Further Reading (Textbooks and Articles. - 2 Atmospheric Aerosols. - 2.1 Definitions. - 2.2 Sources of Aerosols and Aerosol Precursors. - 2.2.1 Marine Aerosols. - 2.2.2 Desert Dust. - 2.2.3 Volcanic Aerosols. - 2.2.4 Biogenic Aerosols. - 2.2.5 Biomass Burning Aerosols. - 2.2.6 Aerosols from Fossil Fuel Combustion. - 2.3 Spatial and Temporal Aerosol Distributions. - 2.4 Aerosol-Cloud-Radiation Interactions. - 2.5 Climate Effects of Aerosols. - References. - Further Reading (Textbooks and Articles). - 3 Physical, Chemical and Optical Aerosol Properties. - 3.1 Fine, Accumulation and Coarse Modes. - 3.2 Size Distribution. - 3.3 Chemical Composition. - 3.3.1 Aerosol Mixture. - 3.3.2 Inorganic Aerosols. - 3.3.3 Black Carbon Aerosols. - 3.3.4 Organic Aerosols. - 3.3.5 Geographic Distribution of Aerosol Chemical Composition. - 3.4 Refractive Index. - 3.5 Deliquescence, Efflorescence and Hysteresis. - 3.6 Definition of Aerosol Optical Properties. - 3.6.1 Absorption and Scattering Cross Sections. - 3.6.2 Phase Function. - 3.6.3 Upscatter Fractions. - 3.7 Calculation of Aerosol Optical Properties. - 3.7.1 Mie Theory. - 3. 7.2 Extinction, Scattering and Absorption. - 3.7.3 Optical Depth and Angström Coefficient. - 3.8 Optical Properties of Nonspherical Aerosols. - 3.9 Aerosols and Atmospheric Visibility. - References. - Further Reading (Textbooks and Articles). - 4 Aerosol Modelling. - 4.1 Introduction. - 4.2 Emissions. - 4.2.1 Generalities. - 4.2.2 Fossil Fuels, Biofuels, and Other Anthropogenic Sources. - 4.2.3 Vegetation Fires. - 4.2.4 Sea Spray. - 4.2.5 Desert Dust. - 4.2.6 Dimethylsulphide. - 4.2.7 Biogenic Volatile Organic Compounds. - 4.2.8 Volcanoes. - 4.2.9 Resuspension. - 4.3 Atmospheric Processes. - 4.3.1 Nucleation. - 4.3.2 Condensation of Semi-Volatile Compounds. - 4.3.3 Coagulation. - 4.3.4 In-Cloud Aerosol Production. - 4.3.5 Wet Deposition. - 4.3.6 Dry Deposition. - 4.3.7 Sedimentation. - 4.3.8 Aerosol Transport. - 4.4 Modelling Approaches. - 4.4.1 Bulk Approach. - 4.4.2 Sectional Approach. - 4.4.3 Modal Approach. - 4.5 Example: The Sulphur Budget. - References. - Further Reading (Textbooks and Articles). - 5 Interactions of Radiation with Matter and Atmospheric Radiative Transfer. - 5.1 Introduction. - 5.2 Electromagnetic Radiation. - 5.2.1 Generalities. - 5.2.2 Definitions. - 5.3 Interactions of Radiation with Matter. - 5.3.1 Matter, Energy and Spectral Lines. - 5.3.2 Intensity of Spectral Lines. - 5.3.3 Spectral Line Profiles. - 5.3.4 Processes of lnteractions of Radiation with Matter. - 5.4 Modelling of the Interaction Processes. - 5.4.1 Molecular Absorption Coefficient. - 5.4.2 Scattering Phase Function. - 5.4.3 Molecular Scattering. - 5.4.4 Absorption and Scattering by Aerosols. - 5.4.5 Thermal Emission. - 5.5 Atmospheric Radiative Transfer. - 5.5.1 Equation of Radiative Transfer. - 5.5.2 Extinction Only. - 5.5.3 Scattering Medium. - 5.5.4 Plane-Parallel Atmosphere. - 5.5.5 Resolution of the Equation of Radiative Transfer. - 5.6 Absorption Bands, Energy, and Actinic Fluxes. - 5.6.1 Main Molecular Absorption Bands in the Atmosphere. - 5.6.2 Radiative Flux. - 5.6.3 Two-Flux Method. - 5.6.4 Stefan-Boltzmann Law. - 5.6.5 Radiative Budget. - 5.6.6 Actinic Fluxes. - 5.6.7 Polarization of Radiation. - References. - Further Reading (Textbooks and Articles). - 6 In Situ and Remote Sensing Measurements of Aerosols. - 6.1 Introduction to Aerosol Remote Sensing. - 6.2 Passive Remote Sensing: Measurement of the Extinction. - 6.2.1 General Principles. - 6.2.2 Ground-Based Photometry. - 6.2.3 Spaceborne Occultation Measurements. - 6.2.4 Retrieval of Aerosol Size Distribution. - 6.3 Passive Remote Sensing: Measurement of the Scattering. - 6.3.1 General Principles. - 6.3.2 Ground-Based Measurement of Scattered Radiation. - 6.3.3 Spaceborne Measurements of Scattered Radiation. - 6.4 Measurement of Infrared Radiation. - 6.4.1 General Principles. - 6.4.2 Spaceborne Nadir Measurement of Infrared Radiation. - 6.4.3 Spaceborne Limb Measurement of Infrared Radiation. - 6.5 Active Remote Sensing: Lidar. - 6.5.1 General Principles. - 6.5.2 The Lidar Equation. - 6.5.3 Raman Lidar. - 6.6 In Situ Aerosol Measurements. - 6.6.1 Measurement of Aerosol Concentrations. - 6.6.2 Measurement of Aerosol Chemical Composition. - 6.6.3 Measurement of Aerosol Scattering. - 6.6.4 Measurement of Aerosol Absorption. - 6.7 Conclusions. - References. - Further Reading (Textbooks and Articles). - 7 Aerosol Data Assimilation. - 7.1 Introduction. - 7.2 Basic Principles of Data Assimilation. - 7.3 Applications of Data Assimilation for Aerosols. - References. - Further Reading (Textbooks and Articles). - 8 Aerosol-Radiation Interactions. - 8.1 Introduction. - 8.2 Atmospheric Radiative Effects Due to Aerosols. - 8.2.1 Simplified Equation for Scattering Aerosols. - 8.2.2 Simplified Equation for Absorbing Aerosols. - 8.2.3 Radiative Transfer Calculations. - 8.2.4 Global Estimates and Sources of Uncertainty. - 8.3 Rapid Adjustments to Aerosol-Radiation Interactions. - 8.4 Radiative Impact of Aerosols on Surface Snow and Ice. - References. - Further Reading (Textbooks and Articles). - 9 Aerosol-Cloud lnteractions. - 39.1 Introduction. - 9 .1.1 Cloud Formation. - 9 .1.2 Cloud Distribution. - 9 .1.3 Aerosol-Cloud Interactions. - 9.2 Aerosol Effects on Liquid Clouds. - 9 .2.1 Saturation Pressure of Water Vapour. - 9.2.2 Kelvin Effect. - 9.2.3 Raoult's Law. - . - 9.2.4 Köhler Theory. - 9.2.5 Extensions to the Köhler Theory. - 9.2.6 CCN and Supersaturation in the Cloud. - 9.2.7 Dynamical and Radiative Effects in Clouds. - 9.2.8 Principle of the Cloud Albedo Effect. - 9.2.9 Observations of the Cloud Albedo Effect. - 9.2.10 Adjustments in Liquid Water Clouds. - 9.2.11 Rapid Adjustments Occurring in Liquid Clouds. - 9.3 Aerosols Effects on Mixed-Phased and Ice Clouds. - 9.3.1 Elements of Microphysics of Ice Clouds. - 9.3.2 Impact of Anthropogenic Aerosols on Ice Clouds. - 9.4 Forcing Due to Aerosol-Cloud lnteractions. - 9.5 Aerosols, Contrails and Aviation-Induced Cloudiness. - 9.5.1 Formation of Condensation Trails. - 9.5.2 Estimate of the Climate Impact of Contrails. - References. - Further Reading (Textbooks and Articles). - 10 Climate Response to Aerosol Forcings. - 10.1 Introduction. - 10.2 Radiative Forcing, Feedbacks and Climate Response. - 10.2.1 Radiative Forcing. - 10.2.2 Climate Feedbacks. - 10.2.3 Rapid Adjustments and Effective Radiative Forcing. - 10.2.4 Climate Response and Climate Efficacy. - 10.3 Climate Response to Aerosol Forcings. - 10.3.1 Equilibrium Response. - 10.3.2 Past Emissions. - 10.3.3 Detection and Attribution of Aerosol Impacts. - 10.3.4 Future Emissions Scenarios. - 10.4 Nuclear Winter. - References. - Further Reading (Textbooks and Articles). - 11 Biogeochemical Effects and Climate Feedbacks of Aerosols. - 11 .1 Introduction. - 11.2 Impact of Aerosols on Terrestrial Ecosystems. - 11.2.1 Diffuse Radiation and Primary Productivity. - 11.2.2 Aerosols as a Source of Nutrients. - 11.2.3 Acidification of Precipitation. - 11.3 Impact of Aerosols on Marine Ecosystems. - 11.4 Aerosols-Atmospheric Chemistry Interactions. - 11.4.1 Interactions with Tropospheric Chemistry. - 11.4.2 Impact of Stratospheric Aerosols on the Ozone Layer and Ultravialet Radiation. - 11.5 Climate Feedbacks Involving Marine Aerosols. - 11.5.1 Sulphate Aerosols from DMS Emissions. - 11.5.2 Marine Aerosols. - 11.5.3 Other Aerosols of Maritime Origin. - 11.6 Climate Feedbacks Involving Continental Aerosols. - 11.6.1 Secondary Organic Aerosols. - 11.6.2 Primary Aerosols of Biogenic Origin. - 11.6.3 Aerosols from Vegetation Fires. - 11.6.4 Desert Dust. - 11.7 Climate Feedbacks Involving Stratospheric Aerosols. - References. - Further Reading (Textbooks and Articles). - 12 Strato
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  • 30
    Monograph available for loan
    Monograph available for loan
    [Erscheinungsort nicht ermittelbar] : IASC
    Call number: AWI P5-19-92257
    Type of Medium: Monograph available for loan
    Pages: 6 Seiten , Illustrationen
    Language: English
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  • 31
    Series available for loan
    Series available for loan
    Akureyri : International Arctic Science Committee
    Associated volumes
    Call number: AWI P5-19-92711
    In: IASC ... bulletin, 2019
    Type of Medium: Series available for loan
    Pages: 78 Seiten , Illustrationen
    ISBN: 978-9935-24-531-1
    ISSN: 1654-7594
    Series Statement: IASC Bulletin 2019
    Language: English
    Note: CONTENTS PREFACE 1 IASC Internal Development IASC Organization IASC Council IASC Executive Committee Secretariat ISIRA IASC Medal 2019 2 IASC Working Groups Cross-cutting Activities Launching of MOSAiC, an IASC Flagship Initiative Atmosphere Working Group (AWG) Cryosphere Working Group (CWG) Marine Working Group (MWG) Social and Human Working Group (SHWG) Terrestrial Working Group (TWG) 3 Arctic Science Summit Week 2018 POLAR2018: Where the Poles Come Together Upcoming ASSWs 4 Data and Observations#Arctic Data Committee (ADC) Sustaining Arctic Observing Networks (SAON) 5 Capacity Building IASC Fellowship Program Fellows’ Voices Overview of Supported Early Career Scientists
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  • 32
    Monograph available for loan
    Monograph available for loan
    Köln : Carl Heymanns Verlag
    Call number: AWI S5-19-92101
    Type of Medium: Monograph available for loan
    Pages: XXI, 311 Seiten , Illustrationen
    ISBN: 9783452291295 , 3452291294
    Language: German
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  • 33
    Monograph available for loan
    Monograph available for loan
    Bremerhaven : Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research
    Call number: AWI G2-19-92755
    Type of Medium: Monograph available for loan
    Pages: 48 Seiten , Illustrationen
    Language: English
    Note: Contents Preface Introduction Helgoland - Treasure trove of species Sylt - Changing tidal flats in a world heritage site Polar Regions - key areas for climate processes Plankton à la carte Plankton and the "extra portion" Forwards, but backwards into the past North Sea in the fast lane of change Vibrios like it hot Detective work in the microcosm Melting glaciers and turbid waters Thawing permafrost comes alive Arctic coasts in retreat A stroll through the underwater forest Mathematical evaluation of the tidal flat menu Let's dive in! Research scientists pay a visit Marine research goes on TV Meeting public needs: Advice and support
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  • 34
    Monograph available for loan
    Monograph available for loan
    München : C.H. Beck
    Call number: AWI A2-20-93900
    Type of Medium: Monograph available for loan
    Pages: 144 Seiten , Illustrationen, Diagramme
    Edition: 2., aktualisierte und erweiterte Auflage
    ISBN: 9783406736162 , 978-3-406-73615-5 , 3-406-73615-7
    Series Statement: C.H. Beck Wissen 2853
    Former Title: Vorangegangen ist Edenhofer, Ottmar, 1961 - Klimapolitik
    Language: German
    Note: Inhaltsverzeichnis Titel Zum Buch Über die Autoren Widmung Impressum Inhalt Vorwort 1. Das Klimaproblem und die Klimapolitik Welche Risiken birgt der Klimawandel? Was ist mit der Vermeidung gefährlichen Klimawandels gemeint? Internationale Klimapolitik als Wette 2. Die Bestandsaufnahme der Klimapolitik Die Entwicklung der Emissionen Das Wirtschafts- und Bevölkerungswachstum Die Renaissance der Kohle und das Angebot fossiler Energieträger Abholzung und Landnutzung Energieeffizienz und erneuerbare Energien 3. Ziele und Wege der Klimapolitik Das 2 °C-Ziel als langfristige Klimapolitik Die Pfade der Transformation Dem technischen Fortschritt eine neue Richtung geben Die Kosten und Risiken des Klimaschutzes Wachstumsverzicht und Klimaschutz Anpassung - auch bei erfolgreicher Klimapolitik unvermeidlich Solar Radiation Management - der letzte Pfeil im Köcher? 4. Instrumente und Institutionen der Klimapolitik Ein Preis für Emissionen und andere Politikinstrumente Warum wir internationale Klimapolitik benötigen Das Paradoxon internationaler Vereinbarungen Die internationalen Verhandlungen Nach Paris: Vorschläge für die Ausgestaltung der internationalen Klimapolitik Die Klimapolitik der Europäischen Union Die deutsche Energiewende und der Klimaschutz Klimapolitik, Ungleichheit und Armutsbekämpfung 5. Die Rolle der Wissenschaft in der Klimapolitik Der Weltklimarat (IPCC) Der IPCC und die Modelle der wissenschaftlichen Politikberatung Die künftigen Herausforderungen für den IPCC Narrative der Klimapolitik Ausblick Weiterführende Literatur Quellen für Daten und Grafiken Register
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  • 35
    Call number: AWI G3-20-94012
    Type of Medium: Monograph available for loan
    Pages: 27 Seiten , Illustrationen
    Edition: Deutsch
    Uniform Title: Frozen-ground cartoons
    Language: German
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  • 36
    Call number: AWI G3-22-94980
    In: Bochumer geographische Arbeiten, 35
    Type of Medium: Series available for loan
    Pages: XI, 211 Seiten , Illustrationen
    ISBN: 3-506-71215-2
    Series Statement: Bochumer geographische Arbeiten 35
    Language: German
    Note: Zugleich: Dissertation, Ruhr-Universität Bochum, 1978 , lnhal tsverzeichnis Verzeichnis der Abbildungen Verzeichnis der tabellarischen Übersichten 1. Einleitung 1.1 Terminologische Fragen 2. Die bisherige Diskussion um die Definition des Periglaziarbegriffes 3. Einführung in die Problematik und Schwerpunkte dieser Untersuchung 3.1 Unterschiedliche Definitionsansätze 3.2 Das Problem aus geographischer Sicht 3.3 Das Problem aus palaoqeographisch-geologischer Sicht 3.4 Schwerpunkte und Arbeitsweise der weiteren Untersuchung 4. Die Einflußnahme periglaziärer Milieufaktoren im Überblick 4.1 Direkt- und indirekt-klimatische Steuerungsfaktoren 4.2 Aklimatische Steuerunqsfaktoren 5. Klimatische und geographische Bodenqefrornistypen 5.1 Dauerfrostboden mit jahreszeitlicher Auftauschicht 5.1.1 Terminologische Fragen und die räumliche Gliederung des Dauerfrostbodens 5.1.2 Die thermische Vertikalqliederung des oberflächennahen Dauerfrostbodens 5.1.3 Zur Verbreitung und klimatischen Abgrenzung des Dauerfrostbodens 5.2 Jahreszeitliche Bodengefrornis 5.3 Tageszeitliche und kurzperiodische Bodengefrornis 5.4 Kammeis 6. Analyse der Bildung, Verbreitung und Differenzierunq wichtiger rezenter Periglaziarerscheinungen und Bewertung ihrer Verwendbarkeit als Definitionskriterien des Periglaziärs 6.1 Periglaziäre Prozesse und periglaziäre Formen im engeren Sinne (Periglaziäre Mikroformung) 6.1.1 Formen der Bodenmusterung ohne Detritussortierung (Texturböden) 6.1.1.1 Kongelikontraktionsformen mit Spalteneis (Eiskeilpolygone) 6.1.1.2 Kongelikontraktionsformen ohne Spalteneis (Sandkeilpolygone) 6.1.1.3 Frostspaltenmakropolygone und Mollisolfrostkeile 6.1.1.4 Spaltenmikropolygone ('Zellenböden') 6.1.1.5 Erdbülten (Thufur) 6.1.1.6 Nichtsortierte Feinerdekreise (Mudpits) 6.1. 2 Frost- und Eishügelformen 6.1.2.1 Saisonale Frosthügel 6.1.2.2 Palsas 6.1.2.3 Pingos und pingoähnliche Formen 6.1.3 Strangmoore 6.1.4 Formen der Bodenmusterung mit Detritussortierung (Strukturböden) 6.1.5 Periglaziär-denudative Prozesse und Formen im engeren Sinne - Kleinformen der Gelisolifluktion 6.1. 5.1 Erscheinungen der amorphen Gelisolifluktion 6.1.5.2 Kleinformen der differenzierten Gelisolifluktion 6.1.5.3 Zusammenfassung und Ergebnisse 6.1.6 Blockgletscher 6.1.7 Vorgänge und Formen der Nivation und Kryoplanation 6.1.8 Dauerfrostboden-Degradation und Depergelationsformen 6.1.8.1 Depergelationsformen infolge vertikaler Dauerfrostboden-Degradation 6.1.8.2 Depergelationsformen infolge lateraler Dauerfrostboden-Degradation 6.2 Periglaziäre Prozesse und Formen im weiteren Sinne (Periglaziäre Meso- und Makroformung) 6.3 Zusammenfassung der klimageomorphologischen Leitformenwerte 7. Zur räumlichen Abgrenzung und regionalen Differenzierung der periglaziären Zone und Höhenstufe - planetarischer und hypsometrischer Wandel der periglaziären Formung 7.1 Grundlagen und Kriterienl der räumlichen Abgrenzung des Periglaziärs 7.2 Kriterien der regionalen Differenzierung des Periglaziärs 7.3 Die Abgrenzung und regionale Differenzierung der periglaziären Zone 7.3.1 Subpolar-ozeanisches Periglaziär 7.3.1.1 Subpolar-hochozeanisches Periglaziär 7.3.2 Subpolar-kontinentales Periqlaziär (subpolares Subperiglaziär) 7.3.3 Polares Periglaziär 7.3.3.1 Polares Tundrenperiglaziär 7.3.3.2 Polares Frostschuttperiglaziär 7.3.4 Hochpolares Frostschuttperiglaziär und antarktisches Periglaziär 7.3.5 Hochkontinentales Boreal-Periglaziär 7.3.6 Zusammenfassung und Ergebnisse 7.4 Abgrenzung, Untergrenzverlauf und hypsometrische Differenzierung der periglaziären Höherstufe 7.4.1 Subpolar-periglaziäre Höhenstufe 7.4.2 Mediolatitudinal-periglaziäre Höhenstufe 7.4.3 Zur Frage einer periglaziären Höhenstufe in den Sub- und Randtropen 7.4.4 Tropisch-periglaziäre Höhenstufe 7.4.5 Zusammenfassung 8. Zusammenfassung und Ergebnisse Summary Literaturverzeichnis , Zusammenfassung in deutscher und englischer Sprache
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  • 37
    Monograph available for loan
    Cambridge, United Kingdom : Cambridge University Press
    Call number: AWI A2-17-90931
    Description / Table of Contents: Climate change is one of the greatest threats facing humanity; a definitive manifestation of the well-worn links between progress and devastation. This book explores the complex relationship that the corporate world has with climate change, and examines the central role of corporations in shaping political and social responses to the climate crisis. The book's principal message is that despite the need for dramatic economic and political change, corporate capitalism continues to rely upon the maintenance of 'business as usual'. The authors explore the different processes through which corporations engage with climate change. Key discussion points include climate change as business risk; corporate climate politics; the role of justification and compromise; and managerial identity and emotional reactions to climate change. Written for researchers and graduate students, this book moves beyond descriptive and normative approaches to provide a sociologically and critically informed theory of corporate responses to climate change.
    Type of Medium: Monograph available for loan
    Pages: XIII, 254 Seiten , Diagramm , 23 cm
    Edition: 1st published 2015, Reprinted 2016
    ISBN: 9781107435131 (paperback) , 9781107078222 (hardback)
    URL: Cover
    Language: English
    Note: Contents: List of figures. - List of tables. - Foreword by Clive Hamilton. - Acknowledgements. - 1. Climate change and corporate capitalism. - 2. Creative self-destruction and the incorporation of critique. - 3. Climate change and the corporate construction of risk. - 4. Corporate political activity and climate coalitions. - 5. Justification, compromise, and corruption. - 6. Climate change, managerial identity and narrating the self. - 7. Emotions, corporate environmentalism and climate change. - 8. Political myths and pathways forward. - 9. Imagining alternatives. - Appendix. - References. - Index.
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  • 38
    Monograph available for loan
    Monograph available for loan
    Baltimore, Md. : Johns Hopkins University Pr.
    Call number: AWI E1-15-89213
    Description / Table of Contents: Alfred Wegener aimed to create a revolution in science which would rank with those of Nicolaus Copernicus and Charles Darwin. After completing his doctoral studies in astronomy at the University of Berlin, Wegener found himself drawn not to observatory science but to rugged fieldwork, which allowed him to cross into a variety of disciplines. The author of the theory of continental drift - the direct ancestor of the modern theory of plate tectonics and one of the key scientific concepts of the past century - Wegener also made major contributions to geology, geophysics, astronomy, geodesy, atmospheric physics, meteorology, and glaciology. Remarkably, he completed this pathbreaking work while grappling variously with financial difficulty, war, economic depression, scientific isolation, illness, and injury. He ultimately died of overexertion on a journey to probe the Greenland ice cap and calculate its rate of drift. This landmark biography - the only complete account of the scientist's fascinating life and work - is the culmination of more than twenty years of intensive research. In Alfred Wegener, Mott T. Greene places Wegener's background and theoretical advances in earth science in the context of his brilliantly eclectic career, bringing Wegener to life by analyzing his published scientific work, delving into all of his surviving letters and journals, and tracing both his passionate commitment to science and his thrilling experiences as a polar explorer, a military officer during World War I, and a world record-setting balloonist. In the course of writing this book, Greene traveled to every place that Alfred Wegener lived and worked - to Berlin, rural Brandenburg, Marbug, Hamburg, and Heidelberg in Germany; to Innsbruck and Graz in Austria; and onto the Greenland ice cap. He also pored over archives in Copenhagen, Munich, Marburg, Graz, and Bremerhaven, where the majority of Wegener's surviving papers are found. Written with great immediacy and descriptive power, Alfred Wegener is a powerful portrait of the scientist who pioneered the modern notion of unified earth science. The book should be of interest not only to earth scientists, students of polar travel and exploration, and historians but to all readers who are fascinated by the great minds of science.
    Type of Medium: Monograph available for loan
    Pages: xiv, 675 S. , Ill., Kt.
    ISBN: 9781421417127
    Language: English
    Note: Contents: Preface. - Acknowledgements. - 1. The boy: Berlin and Brandenburg, 1880-1899. - 2. The student: Berlin - Heidelberg - Innsbruck - Berlin, 1899-1901. - 3. The astronomer: Berlin, 1901-1904. - 4. The aerologist: Lindenberg, 1905-1906. - 5. The polar meteorologist: Greenland, 1906. - 6. The Arctic explorer (1): Greenland, 1907-1908. - 7. The atmospheric physicist (1): Berlin und Marburg, 1908-1910. - 8. The atmospheric physicist (2): Marburg, 1910. - 9. At a crossroads: Marburg, 1911. - 10. The theorist of continental drift (1): Marburg, December 1911 - February 1912. - 11. The theorist of continental drift (2): Marburg, February - April 1912. - 12. The Arctic explorer (2): Greenland, 1912-1913. - 13. The soldier: Marburg and "The Field", 1913-1915. - 14. The meteorologist: "In the field", 1916-1918. - 15. The geophysicist: Hamburg, 1919-1920. - 16. From geophysicist to climatologist: Hamburg, 1920-1922. - 17. The paleoclimatologist: Hamburg, 1922-1924. - 18. The professor: Graz, 1924-1928. - 19. Theorist and Arctic explorer: Graz and Greenland, 1928-1929. - 20. The expedition leader: Graz and Greenland, 1929-1930. - Epilogue. - Notes. - Bibliographical essay. - Index.
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  • 39
    Monograph available for loan
    Monograph available for loan
    Berlin : Verlag für Geowissenschaften
    Call number: AWI E1-15-89214
    Description / Table of Contents: Alfred Wegener (1880-1930) war einer der bedeutendsten deutschen Naturwissenschaftler des vergangenen Jahrhunderts. Er untersuchte die Erdatmosphäre mit Drachen und Fesselballonen, erforschte das Wesen der gefürchteten Windhosen, fuhr vier Mal auf wissenschaftliche Expeditionen nach Grönland und stellte einen Weltrekord im bemannten Ballonflug auf. In diesem Buch wird das Leben dieses vielseitigen Forschers erzählt. Daneben wird sein wissenschaftliches Hauptwerk, die Kontinentaldrifttheorie, und seine Theorie zur Entstehung der Mondkrater durch Meteoritenbombardement beleuchtet, an die er Ideen über die Entstehung der Erde selbst knüpfte.
    Type of Medium: Monograph available for loan
    Pages: 208 S. , Ill., Kt.
    Edition: 1. Aufl.
    ISBN: 978-3-9814603-0-8 , 3981460308
    Language: German
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  • 40
    Monograph available for loan
    Monograph available for loan
    Hamburg : maribus
    Associated volumes
    Call number: AWI G2-15-89285
    In: World ocean review
    Type of Medium: Monograph available for loan
    Pages: 151 S. , zahlr. Ill, graph. Darst.
    ISBN: 9783866482531
    Series Statement: World ocean review 4
    Language: English
    Note: Contents: Preface. - Chapter 1: Concepts for a better world. - What is sustainability?. - The value of nature. - Conclusion: “Sustainability” – a difficult concept to define. - Chapter 2: How the sea serves us. - The bounty of the sea. - Oceans under threat. - Conclusion: Marine ecosystem services at risk. - Chapter 3: Politics and the oceans. - On the difficulty of governing the sea. - Conclusion: The ideal of good marine policy. - Chapter 4: Hope for the oceans. - Roadmap towards a sustainable future?. - Protecting the seas is possible. - Conclusion: How marine conservation can work. - Overall conclusion. - Glossary. - Contributors. - Bibliography. - Table of figures. - Index. - Abbreviations. - Partners and Acknowledgements. - Publication details.
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  • 41
    Monograph available for loan
    Monograph available for loan
    Cham : Springer
    Call number: AWI G6-15-89028
    Description / Table of Contents: The book offers a modern, comprehensive, and holistic view of natural gas seepage, defined as the visible or invisible flow of gaseous hydrocarbons from subsurface sources to Earth’s surface. Beginning with definitions, classifications for onshore and offshore seepage, and fundamentals on gas migration mechanisms, the book reports the latest findings for the global distribution of gas seepage and describes detection methods. Seepage implications are discussed in relation to petroleum exploration, environmental impacts (hazards, pollution, atmospheric emissions, and past climate change), emerging scientific issues (abiotic gas and methane on Mars), and the role of seeps in ancient cultures. With an updated bibliography and an integrated analysis of available data, the book offers a new fundamental awareness - gas seepage is more widespread than previously thought and influences all of Earth’s external “spheres”, including the hydrosphere, atmosphere, biosphere, and anthroposphere.
    Type of Medium: Monograph available for loan
    Pages: XIII, 199 S. , Ill., graph. Darst.
    ISBN: 978-3-319-14600-3
    Language: English
    Note: Contents: 1 Introduction. - 1.1 Basic Concepts and Definitions. - 1.1.1 What Gas Seepage Is, What It Is Not. - 1.1.2 A Jungle of Names: Seeps, Macroseeps, Microseepage, Microseeps, and Miniseepage. - 1.1.3 Seepage id est Migration. - 1.1.4 Microbial, Thermogenic, and Abiotic Methane. - 1.2 Significance of Seepage and Implications. - 1.2.1 Seepage and Petroleum Exploration. - 1.2.2 Marine Seepage on the Crest of the Wave. - 1.2.3 From Sea to Land. - 1.2.4 A New Vision. - References. - 2 Gas Seepage Classification and Global Distribution. - 2.1 Macro-Seeps. - 2.1.1 Gas Seeps. - 2.1.2 Oil Seeps. - 2.1.3 Gas-Bearing Springs. - 2.1.4 Mud Volcanoes. - 2.1.5 Miniseepage. - 2.1.6 The Global Distribution of Onshore Macro-Seeps. - 2.2 Microseepage. - 2.3 Marine Seepage Manifestations. - References. - 3 Gas Migration Mechanisms. - 3.1 Fundamentals. - 3.1.1 Sources and Pathways. - 3.1.2 Diffusion and Advection. - 3.2 Actual Mechanisms and Migration Forms. - 3.2.1 Bubble and Microbubble Flow. - 3.2.2 Gas Seepage Velocity. - 3.2.3 Matter Transport by Microbubbles. - 3.2.4 The Concept of Carrier Gas and Trace Gas. - References. - 4 Detecting and Measuring Gas Seepage. - 4.1 Gas Detection Methods. - 4.1.1 Above-Ground (Atmospheric) Measurements. - 4.1.2 Ground Measurements. - 4.1.3 Measurements in Aqueous Systems. - 4.2 Indirect Methods. - 4.2.1 Chemical-Mineralogical Alterations of Soils. - 4.2.2 Vegetation Changes (Geobotanical Anomalies). - 4.2.3 Microbiological Analyses of Soils. - 4.2.4 Radiometric Surveys. - 4.2.5 Geophysical Techniques. - References. - 5 Seepage in Field Geology and Petroleum Exploration. - 5.1 Seepage and Faults. - 5.2 Microseepage Applied to Areal Petroleum Exploration. - 5.2.1 Which Gas Can Be Measured?. - 5.2.2 Microseepage Methane Flux Measurements. - 5.3 Seep Geochemistry for Petroleum System Evaluation. - 5.3.1 Recognising Post-genetic Alterations of Gases. - 5.3.2 Assessing Gas Source Type and Maturity. - 5.3.3 The Presence of Undesirable Gases (CO2, H2S, N2). - 5.3.4 Helium in Seeps… for Connoisseurs. - References. - 6 Environmental Impact of Gas Seepage. - 6.1 Geohazards. - 6.1.1 Methane Explosiveness. - 6.1.2 The Toxicity of Hydrogen Sulphide. - 6.1.3 Mud Expulsions and the Degradation of Soil-Sediments. - 6.2 Stray Gas, Natural versus Man-Made. - 6.3 Hypoxia in Aquatic Environments. - 6.4 Gas Emissions to the Atmosphere. - 6.4.1 Methane Fluxes and the Global Atmospheric Budget. - 6.4.2 Ethane and Propane Seepage, a Forgotten Potential Source of Ozone Precursors. - 6.5 Natural Seepage and CO2 Geological Sequestration. - References. - 7 Seepage in Serpentinised Peridotites and on Mars. - 7.1 Seeps and Springs in Active Serpentinisation Systems. - 7.1.1 Where Abiotic Methane Is Seeping. - 7.1.2 How Abiotic Methane in Land-Based Serpentinisation Systems Is Formed. - 7.1.3 How to Distinguish Abiotic and Biotic Methane. - 7.1.4 Seepage to the Surface. - 7.1.5 Is Abiotic Gas Seepage Important for the Atmospheric Methane Budget?. - 7.2 Potential Methane Seepage on Mars. - 7.2.1 Looking for Methane on Mars. - 7.2.2 A Theoretical Martian Seepage. - References. - 8 Gas Seepage and Past Climate Change. - 8.1 Past Seepage Stronger than Today. - 8.2 Potential Proxies of Past Seepage. - 8.3 Methane and Quaternary Climate Change. - 8.3.1 Traditional Models: Wetlands versus Gas Hydrates. - 8.3.2 Adding Submarine Seeps. - 8.3.3 Considering Onshore and Offshore Seepage in Total. - 8.3.4 CH4 Isotope Signatures in Ice Cores. - 8.4 Longer Geological Time Scale Changes. - 8.4.1 The Concept of Sedimentary Organic Carbon Mobilization. - 8.4.2 Paleogene Changes. - References. - 9 Seeps in the Ancient World: Myths, Religions, and Social Development. - 9.1 Seeps in Mythology and Religion. - 9.2 Seeps in Social and Technological Development. - References. - Epilogue. - Index.
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  • 42
    Monograph available for loan
    Monograph available for loan
    Berlin : Matthes & Seitz
    Call number: AWI E1-15-89047
    Description / Table of Contents: Georg Forster (1754-1794) war eine der faszinierendsten Gestalten seiner Zeit: glänzender Schriftsteller, Naturforscher, Entdecker, Zeichner, Übersetzer und entschiedener Revolutionär. Auf seiner Weltumsegelung mit James Cook berührte er Eisberge mit den eigenen Händen, lief den Strand von Tahiti entlang, besuchte fremde Völker, lebte unter »Menschenfressern« und überquerte Ozeane und den Äquator. Und er stand im Zentrum des politischen Geschehens, als er - inspiriert von der Französischen Revolution - 1793 die »Mainzer Republik« ausrief, die erste Republik auf deutschem Boden. Anschaulich und fesselnd portraitiert Jürgen Goldstein dieses Ausnahmeleben, in dem sich »Freiheit« und »Naturgewalt« berührten. Niemand ist auf vergleichbare Weise das erfahrungsgetriebene Experiment eingegangen, die Natur mit dem Politischen kurzzuschließen. Die Funken, die Forster aus seinen Leitvorstellungen schlug, erhellten für einen Weltaugenblick die Aussicht, es könne so etwas wie natürliche Revolutionen geben. Jürgen Goldstein, geboren 1962, lehrt als Professor für Philosophie an der Universität Koblenz-Landau. Maßgeblich von Hans Blumenberg inspiriert, widmen sich seine Studien der Genese und dem Profil der Moderne. Seine Bücher befassen sich mit der Herausbildung der neuzeitlichen Subjektivität und Rationalität, der politischen Philosophie des 20. Jahrhunderts und der Geschichte der Naturwahrnehmung.
    Description / Table of Contents: Wagemutiger Entdeckungsreisender, empfindsamer Naturbetrachter, glühender Revolutionär: Georg Forster befuhr mit James Cook die Weltmeere, verfasste glänzende Reiseerzählungen und stürzte sich mit provokanten Ansichten in die politischen Debatten seiner Zeit. Er war in Mainz Mitbegründer der ersten Republik auf deutschem Boden und starb - gescheitert und vereinsamt - im Pariser Exil. In seiner ebenso fesselnden wie kenntnisreichen Biographie entwirft Jürgen Goldstein mit Eleganz und Tiefenschärfe ein anschauliches Panorama von Forsters rastlosem Leben zwischen Euphorie und Elend - das Leben eines Weltbürgers, der davon überzeugt war, dass sich die Freiheit eines Tages mit Naturgewalt ihren Wag bahnen müsse.
    Type of Medium: Monograph available for loan
    Pages: 301 S. , 22 cm
    Edition: 1. Aufl.
    ISBN: 978-3-95757-090-1
    Language: English
    Note: Inhalt: Auftakt. - Ein gefährliches Wort: Natur. - 1. 1754-1772. ANFÄNGE. - Wie ein unbeschriebenes Blatt. - Erste Eindrücke von Weite. - Zur rechten Zeit am rechten Ort. - 2. 1772-1775. ANSICHTEN DER NATUR: DIE REISE UM DIE WELT. - Wahrnehmungsmuster. - Die große Erzählung. - Das Meer. - Entfernungen. - Strapazen. - Wagnisse im Eis. - Das sonnige Arkadien. - Erste und letzte Anblicke. - Edle Wilde?. - Unter Menschenfressern. - Mord und Totschlag. - Eine Gemeinschaft von Gleichen. - Die gekränkten Rechte der Menschheit. - 3. 1776-1788. ZWISCHENSPIELE. - Blue devils. - Der Balsam der Natur. - Eine physische Anthropologie. - Ein Streit um Menschenrassen. - Politisches Wetterleuchten: Cook, der Staatsmann. - 4. 1789-1793. ANSICHTEN DES POLITISCHEN: DIE REVOLUTION. - Pariser Unruhen und politische Öffentlichkeit. - Geschichtszeichen der neuen Welt: Revolutionen. - Politische Ansichten vom Niederrhein. - Natur als Schicksal. - Das Prinzip des politischen Wandels: Gärung. - Die französische Mainzer Freiheit. - Die Mainzer Republik. - Kundige der unterirdischen Gänge: Forster und Goethe. - 5. 1793-1794. DAS ENDE: DIE GROßE RATLOSIGKEIT. - Das ungeheure Haupt der Revolution: Paris. - Das kalte Fieber des Terrors. - Tänzer am Rande des Unsinns: Adam Lux. - Zurück zur Natur: Menschenwürde. - Die Revolution ist die Revolution. - Verlassen wie ein Kind. - Eine Quelle sonderbarer Beschauung. - Schluss. - Das Mahagoni-Schränkchen. - Anmerkungen. - Literatur.
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  • 43
    Monograph available for loan
    Monograph available for loan
    Hamburg : maribus
    Associated volumes
    Call number: AWI G2-15-89284
    In: World ocean review
    Type of Medium: Monograph available for loan
    Pages: 151 S. , zahlr. Ill., graph. Darst., Kt.
    ISBN: 9783866482524
    Series Statement: World ocean review 4
    Language: German
    Note: Inhaltsverzeichnis: Vorwort. - Kapitel 1: Konzepte für eine bessere Welt. - Was ist Nachhaltigkeit?. - Der Wert der Natur. - Conclusio: „Nachhaltigkeit“ – ein schwer zu definierender Begriff. - Kapitel 2: Was das Meer zu leisten vermag. - Das Gute im Meer. - Der bedrohte Ozean. - Conclusio: Ökosystemleistungen des Meeres in Gefahr. - Kapitel 3: Die Politik und das Meer. - Von der Schwierigkeit, das Meer zu verwalten. - Conclusio: Das Ideal der guten Meerespolitik. - Kapitel 4: Hoffnung für den Ozean. - Fahrplan für eine nachhaltige Zukunft?. - Meeresschutz ist möglich. - Conclusio: Wie Meeresschutz funktionieren kann. - Gesamt-Conclusio. - Glossar. - Mitwirkende. - Quellenverzeichnis. - Abbildungsverzeichnis. - Index. - Abkürzungen. - Partner und Danksagung. - Impressum.
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  • 44
    Call number: AWI NBM-17-91184
    Description / Table of Contents: The Atlas content is presented by 8 large sections and 39 subsections which present characteristics of the key glaciological regions; there are also two auxiliary subsections: introductory one and the reference part that is indicator of geographical regions. The whole material is placed on the 590 pages of the Atlas. Themes and subjects of the maps are given in a system of three levels which one with corresponding number of base scales and, respectively, the territorial coverage. In addition to a possibility to look through all digital maps, any user can also see original vector layers in the format of shp. files which are saved in decimal degrees .This makes possible to project the data into any view, to design own project, to transform the data into other GIS-formats, to analyze the information together with own or other data with geographical conjunction .
    Type of Medium: Non-book medium
    Pages: 1 CD-ROM
    Language: Russian , English
    Note: In rus. und engl. Sprache , Teilw. in kyrill. Schr.
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  • 45
    Call number: PIK N 456-18-91895 ; AWI A5-18-91895
    Type of Medium: Monograph available for loan
    Pages: xv, 569 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 9780128117149
    Language: English
    Note: Contents: Contributors. - Preface. - Acknowledgements. - PART I SETTING THE SCENE. - 1. Introduction: Why Sub-seasonal to Seasonal Prediction (S2S)? / Frédéric Vitart, Andrew W. Robertson. - 1 History of Numerical Weather and Climate Forecasting. - 2 Sub-seasonal to Seasonal Forecasting. - 3 Recent National and International Efforts on Sub-seasonal to Seasonal Prediction. - 4 Structure of This Book. - 2. Weather Forecasting: What Sets the Forecast Skill Horizon? / Zoltan Toth, Roberto Buizza. - 1 Introduction. - 2 The Basics of Numerical Weather Prediction. - 3 The Evolution of NWP Technique. - 4 Enhancement of Predictable signals. - 5 Ensemble Techniques: Brief Introduction. - 6 Expanding the forecast skill Horizon. - 7 Concludmg Remarks: Lessons for S2S Forecasting. - Acknowledgements. - 3. Weather Within Climate: Sub-seasonal Predictability of Tropical Daily Rainfall Characteristics / Vincent Moron, Andrew W. Robertson, Lei Wang. - 1 Introduction. - 2 Data and Methods. - 3 Results. - 4 Discussion and Concluding Remarks. - 4. Identifying Wave Processes Associated With Predictability Across Time Scales: An Empirical Normal Mode Approach / Gilbert Brunet, John Methven. - 1 Introduction. - 2 Partitioning Atmospheric Behavior Using Its Conservation Properties. - 3 The ENM Approach to Observed Data and Models and Its Relevance to S2S Dynamics and Predictability. - 4 Conclusion. - Acknowledgments. - PART II SOURCES OF S2S PREDICTABILITY. - 5. The Madden-Julian Oscillation / Steven J. Woolnough. - 1 Introduction. - 2 The Real-Time Multivariate MJO Index. - 3 Observed MJO Structure. - 4 The Relationship Between the MJO and Tropical and Extratropical Weather. - 5 Theories and Mechanisms for MJO Initiation, Maintenance, and Propagation. - 6 The Representation of the MJO in Weather and Climate Models. - 7 MJO Prediction. - 8 Future Priorities for MJO Research for S2S Prediction. - Acknowledgments. - 6. Extratropical Sub-seasonal to Seasonal Oscillations and Multiple Regimes: The Dynamical Systems View / Michael Ghil, Andreas Groth, Dmitri Kondrashov, Andrew W. Robertson. - 1 Introduction and Motivation. - 2 Multiple Midlatitude Regimes and Low-Frequency Oscillations. - 3 Extratropical Oscillations in the S2S Band. - 4 Low-Order, Data-Driven Modeling, Dynamical Analysis, and Prediction. - 5 Concluding Remarks. - Acknowledgments. - 7. Tropical-Extratropical Interactions and Teleconnections / Hai Lin, Jorgen Frederiksen, David Straus, Christiana Stan. - 1 Introduction. - 2 Tropical Influence on the Extratropical Atmosphere. - 3 Extratropical Influence on the Tropics. - 4 Tropical-Extratropical, Two-Way Interactions. - 5 Summary and Discussion. - Appendix. Technical Matters Relating to Section 4.2. - 8. Land Surface Processes Relevant to Sub-seasonal to Seasonal (S2S) Prediction / Paul A. Dirmeyer, Pierre Gentine, Michael B. Ek, Gianpaolo Balsamo. - 1 Introduction. - 2 Process of Land-Atmosphere Interaction. - 3 A Brief History of Land-Surface Models. - 4 Predictability and Prediction. - 5 Improving Land-Driven Prediction. - 9. Midlatitude Mesoscale Ocean-Atmosphere Interaction and Its Relevance to S2S Prediction / R. Saravanan, P. Chang. - 1 Introduction. - 2 Data and Models. - 3 Mesoscale Ocean-Atmosphere Interaction in the Atmospheric Boundary Layer. - 4 Local Tropospheric Response. - 5 Remote Tropospheric Response. - 6 Impact on Ocean Circulation. - 7 Implications for S2S Prediction. - 8 Summary and Conclusions. - Acknowledgments. - 10. The Role of Sea Ice in Sub-seasonal Predictability / Matthieu Chevallier, François Massonnet, Helge Goessling, Virginie Guémas, Thomas Jung. - 1 Introduction. - 2 Sea Ice in the Coupled Atmosphere-Ocean System. - 3 Sea Ice Distribution, Seasonality, and Variability. - 4 Sources of Sea Ice Predictability at the Sub-seasonal to Seasonal Timescale. - 5 Sea Ice Sub-seasonal to Seasonal - Predictability and Prediction Skill in Models. - 6 Impact of Sea Ice on Sub-seasonal Predictability. - 7 Concluding Remarks. - Acknowledgments. - 11. Sub-seasonal Predictability and the Stratosphere / Amy Butler, Andrew Charlton-Perez, Daniela I. V. Domeisen, Chaim Garfinkel, Edwin P. Gerber, Peter Hitchcock, Alexey Yu. Karpechko, Amanda C. Maycock, Michael Sigmond, Isla Simpson, Seok-Woo Son. - 1 Introduction. - 2 Stratosphere-Troposphere Coup ling in the Tropics. - 3 Stratosphere-Troposphere Coupling in the Extratropics. - 4 Predictability Related to Extratropical Stratosphere-Troposphere Coupling. - 5 Summary and Outlook. - PART Ill S2S MODELING AND FORECASTING. - 12. Forecast System Design, Configuration, and Complexity / Yuhei Takaya. - 1 Introduction. - 2 Requirements and Constraints of the Operational Sub-seasonal Forecast. - 3 Effect of Ensemble Size and Lagged Ensemble. - 4 Real-Time Forecast Configuration. - 5 Reforecast Configuration. - 6 Summary and Concluding Remarks. - Acknowledgments. - 13. Ensemble Generation: The TIGGE and S2S Ensembles / Roberto Buizza. - 1 Global Sub-seasonal and Seasonal Prediction Is an Initial Value Problem. - 2 Ensembles Provide More Complete and Valuable Information Than Single States. - 3 A Brief Introduction to Data Assimilation. - 4 A Brief Introduction to Model Uncertainty Simulation. - 5 An Overview of Operational, Global, Sub-seasonal, and Seasonal Ensembles, and Their Initialization and Generation Methods. - 6 Ensembles: Considerations About Their Future. - 7 Summary and Key Lessons. - 14. GCMs With Full Representation of Cloud Microphysics and Their MJO Simulations / In-Sik Kang, Min-Seop Ahn, Hiroaki Miura, Aneesh Subramanian. - 1 Introduction. - 2 Global CRM. - 3 Superparameterized GCM. - 4 GCM With Full Representation of Cloud Microphysics and Scale-Adaptive Convection. - 5 Summary and Conclusion. - Acknowledgments. - 15. Forecast Recalibration and Multimodel Combination / Stefan Siegert, David B. Stephenson. - 1 Introduction. - 2 Statistical Methods for Forecast Recalibration. - 3 Regression Methods. - 4 Forecast Combination. - 5 Concluding Remarks. - Acknowledgments. - 16. Forecast Verification for S2S Timescales / Caio A. S. Coelho, Barbara Brown, Laurie Wilson, Marion Mittermaier, Barbara Casati. - 1 Introduction. - 2 Factors Affecting the Design of Verification Studies. - 3 Observational References. - 4 Review of the Most Common Verification Measures. - 5 Types of S2S Forecasts and Current Verification Practices. - 6 Summary, Challenges, and Recommendations in S2S Verification. - PART IV S2S APPLICATIONS. - 17. Sub-seasonal to Seasonal Prediction of Weather Extremes / Frédérik Vitart, Christopher Cunningham, Michael Deflorio, Emanuel Dutra, Laura Ferranti, Brian Golding, Debra Hudson, Charles Jones, Christophe Lavaysse, Joanne Robbins, Michael K. Tippett. - 1 Introduction. - 2 Prediction of Large-Scale, Long-Lasting Extreme Events. - 3 Prediction of Mesoscale Events. - 4 Display and Verification of Sub-seasonal Forecasts of Extreme Events. - 5 Conclusions. - 18. Pilot Experiences in Using Seamless Forecasts for Early Action: The "Ready-Set-Go!" Approach in the Red Cross / Juan Bazo, Roop Singh, Mathieu Destrooper, Erin Coughlan de Perez. - 1 Introduction. - 2 Why Sub-seasonal?. - 3 Case Study: Peru El Niño. - 4 Reflections on the Use of S2S Forecasts. - 5 Conclusions. - 19. Communication and Dissemination of Forecasts and Engaging User Communities / Joanne Robbins, Christopher Cunningham, Rutger Dankers, Matthew Degennaro, Giovanni Dolif, Robyn Duell, Victor Marchezini, Brian Mills, Juan Pablo Sarmiento, Amber Silver, Rachel Trajber, Andrew Watkins. - 1 Introduction. - 2 Sector-Specific Methods and Practices in S2S Forecast Communication, Dissemination, and Engagement. - 3 Guiding principles for improved communication Practices. - 4 Summary and Recommendations for Future Research. - 20. Seamless Prediction of Monsoon Onset and Active/Break Phases / A.
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  • 46
    Call number: AWI P5-18-91710
    Type of Medium: Monograph available for loan
    Pages: 24 S. , Ill.
    Edition: Stand: September 2015
    Language: German
    Note: Inhaltsverzeichnis: Vorwort. - Einleitung. - 1. Strategische Ziele der Arktisforschung. - 2. Die zentralen Fragen der Arktisforschung. - 2.1. Vergangenheit, Gegenwart und Zukunft des Klimawandels in der Arktis. - 2.2. Beitrag des grönländischen Inlandeises zur Meeresspiegelerhöhung. - 2.3. Rückgang des arktischen Meereises. - 2.4. Permafrost und Gashydrate als unbekannte Größen im Klimasystem. - 2.5. Anpassung polarer Organismen an die arktische Umwelt im Wandel. - 2.6. Chancen und Risiken zunehmender wirtschaftlicher Nutzung der Arktis. - 3. Stand der deutschen Polarforschung. - 3.1. Partner der deutschen Arktisforschung. - 3.2. Regionale Schwerpunkte der deutschen Arktisforschung. - 3.3. Positionierung im internationalen Umfeld. - 4. Umsetzung der Arktisforschungsstrategie. - 4.1. Forschung für Nachhaltigkeit. - 4.2. Wissenstransfer in die Gesellschaft. - 4.3. Technologietransfer. - 4.4. Nachwuchsförderung. - Anmerkungen. - Impressum.
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  • 47
    Call number: AWI G8-19-92587
    Description / Table of Contents: Arctic tundra ecosystems are experiencing warming twice the global average and Arctic vegetation is responding in complex and heterogeneous ways. Shifting productivity, growth, species composition, and phenology at local and regional scales have implications for ecosystem functioning as well as the global carbon and energy balance. Optical remote sensing is an effective tool for monitoring ecosystem functioning in this remote biome. However, limited field-based spectral characterization of the spatial and temporal heterogeneity limits the accuracy of quantitative optical remote sensing at landscape scales. To address this research gap and support current and future satellite missions, three central research questions were posed: • Does canopy-level spectral variability differ between dominant low Arctic vegetation communities and does this variability change between major phenological phases? • How does canopy-level vegetation colour images recorded with high and low spectral resolution devices relate to phenological changes in leaf-level photosynthetic pigment concentrations? • How does spatial aggregation of high spectral resolution data from the ground to satellite scale influence low Arctic tundra vegetation signatures and thereby what is the potential of upcoming hyperspectral spaceborne systems for low Arctic vegetation characterization? To answer these questions a unique and detailed database was assembled. Field-based canopy-level spectral reflectance measurements, nadir digital photographs, and photosynthetic pigment concentrations of dominant low Arctic vegetation communities were acquired at three major phenological phases representing early, peak and late season. Data were collected in 2015 and 2016 in the Toolik Lake Research Natural Area located in north central Alaska on the North Slope of the Brooks Range. In addition to field data an aerial AISA hyperspectral image was acquired in the late season of 2016. Simulations of broadband Sentinel-2 and hyperspectral Environmental and Mapping Analysis Program (EnMAP) satellite reflectance spectra from ground-based reflectance spectra as well as simulations of EnMAP imagery from aerial hyperspectral imagery were also obtained. Results showed that canopy-level spectral variability within and between vegetation communities differed by phenological phase. The late season was identified as the most discriminative for identifying many dominant vegetation communities using both ground-based and simulated hyperspectral reflectance spectra. This was due to an overall reduction in spectral variability and comparable or greater differences in spectral reflectance between vegetation communities in the visible near infrared spectrum. Red, green, and blue (RGB) indices extracted from nadir digital photographs and pigment-driven vegetation indices extracted from ground-based spectral measurements showed strong significant relationships. RGB indices also showed moderate relationships with chlorophyll and carotenoid pigment concentrations. The observed relationships with the broadband RGB channels of the digital camera indicate that vegetation colour strongly influences the response of pigment-driven spectral indices and digital cameras can track the seasonal development and degradation of photosynthetic pigments. Spatial aggregation of hyperspectral data from the ground to airborne, to simulated satel-lite scale was influenced by non-photosynthetic components as demonstrated by the distinct shift of the red edge to shorter wavelengths. Correspondence between spectral reflectance at the three scales was highest in the red spectrum and lowest in the near infra-red. By artificially mixing litter spectra at different proportions to ground-based spectra, correspondence with aerial and satellite spectra increased. Greater proportions of litter were required to achieve correspondence at the satellite scale. Overall this thesis found that integrating multiple temporal, spectral, and spatial data is necessary to monitor the complexity and heterogeneity of Arctic tundra ecosystems. The identification of spectrally similar vegetation communities can be optimized using non-peak season hyperspectral data leading to more detailed identification of vegetation communities. The results also highlight the power of vegetation colour to link ground-based and satellite data. Finally, a detailed characterization non-photosynthetic ecosystem components is crucial for accurate interpretation of vegetation signals at landscape scales.
    Type of Medium: Dissertations
    Pages: vi, 126 Seiten , Illustrationen
    Language: English
    Note: Dissertation, Universität Potsdam, 2019 , Table of Contents Abstract Zusammenfassung Abbreviations 1 Introduction 1.1 Scientific Background and Motivation 1.1.1 Arctic Tundra Vegetation 1.1.2 Remote Sensing of Arctic Tundra Vegetation 1.1.3 Hyperspectral Remote Sensing of Arctic Vegetation 1.2 Aims and Objectives 1.3 Study Area and Data 1.3.1 Toolik Lake Research Natural Area 1.3.2 In-situ Canopy-level Spectral Data 1.3.3 True-colour Digital Photographs 1.3.4 Leaf-level Photosynthetic Pigment Data 1.3.5 Airborne AISA Imagery 1.3.6 Simulated EnMAP and Sentinel-2 Reflectance Spectra 1.3.7 Simulated EnMAP Imagery 1.4 Thesis Structure and Author Contributions 1.4.1 Chapter 2 -A Phenological Approach to Spectral Differentiation of Low-Arctic Tundra Vegetation Communities, North Slope Alaska 1.4.2 Chapter 3 -Monitoring Pigment-driven Vegetation Changes in a Low Arctic Tundra Ecosystem Using Digital Cameras 1.4.3 Implications of Litter and Non-vascular Components on Multiscale Hyperspectral Data in a low-Arctic Ecosystem 2 A Phenological Approach to Spectral Differentiation of Low Arctic Tundra Vegetation Communities, North Slope Alaska 2.1 Abstract 2.2 Introduction 2.3 Materials and Methods 2.3.1 Study Site and Low Arctic Vegetation Types 2.3.2 Ground-Based Data and Sampling Protocol 2.3.3 EnMAP and Sentinel-2 Surface Reflectance Simulation 2.3.4 Stable Wavelength Identification Using the InStability Index 2.4 Results 2.4.1 Spectral Characteristics by Phenological Phase 2.4.2 InStability Index and Wavelength Selection of Ground-based Spectra 2.4.3 InStability Index and Wavelength Selection of Simulated Satellite Reflectance Spectra 2.5 Discussion 2.5.1 Phenological Phase and Wavelength Stability of Ground-based Spectra 2.5.2 Phenological Phase and Wavelength Stability of Satellite Resampled Spectra 2.5.3 Influence of Spatial Scale 2.6 Conclusions 2.7 Acknowledgements 2.8 Supplementary Material 2.8.1 Data Publication 3 Monitoring Pigment-driven Vegetation Changes in a Low Arctic Tundra Ecosystem Using Digital Cameras 3.1 Abstract 3.2 Introduction 3.3 Methods 3.3.1 Study Site 3.3.2 Digital Photographs 3.3.3 Field-based Spectral Data 3.3.4 Vegetation Pigment Concentration 3.3.5 Data Analyses 3.4 Results 3.4.1 RGB Indices as a Surrogate for Pigment-driven Spectral Indices 3.4.2 RGB Indices as a Surrogate for Leaf-level Pigment concentration 3.5 Discussion 3.6 Conclusions 3.7 Supplementary Material 3.7.1 Data Publication 4 Implications of Litter and Non-vascular Components on Multiscale Hyperspectral Data in a Low Arctic Ecosystem 4.1 Abstract 4.2 Introduction 4.3 Materials and Methods 4.3.1 Study Site 4.4 Remote Sensing Data 4.4.1 Ground-based Image Spectroscopy Data 4.4.2 Airborne AISA Hyperspectral Data 4.4.3 EnMAP Simulation 4.4.4 Spectral Comparison by Wavelength 4.4.5 Linear Mixture Analysis 4.5 Results 4.5.1 Spatial Scaling of Spectral Signals 4.6 Discussion 4.7 Conclusions 4.8 Acknowledgements 5 Synthesis and Discussion 5.1 Phenological Phase: does phenology influence the spectral variability of dominant low Arctic vegetation communities? 5.2 Vegetation Colour: How does canopy-level vegetation colour relate to phenological changes in leaf-level photosynthetic pigment concentration? 5.3 Intrinsic Ecosystem Components: How does spatial aggregation of high spectral resolution data influence low Arctic tundra vegetation signals? 5.4 Key Innovations 5.5 Limitations and Technical Considerations 5.6 Outlook: Opportunities for Future Research 6 References Acknowledgements
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  • 48
    Call number: AWI P7-19-93234 ; IASS 19.93234 ; PIK N 454-20-93234
    In: World ocean review, 6
    Type of Medium: Series available for loan
    Pages: 329 Seiten , Illustrationen
    ISBN: 978-3-86648-634-8
    Series Statement: World ocean review 6
    Language: German
    Note: Inhalt Vorwort Arktis und Antarktis – Naturräume in Poleposition Eine kurze Geschichte der Polarregionen Der Mensch erobert die Polargebiete Conclusio: Arktis und Antarktis – zwei grundverschiedene Polargebiete Die Polargebiete als Teil des globalen Klimasystems Warum es in den Polarregionen so kalt wird Eisschollen, Eisschilde und das Meer Conclusio: Eine Kettenreaktion mit frostigem Ende Die Auswirkungen des Klimawandels auf die Polarregionen Die Pfade der Wärme Der Rückzug des Eises Conclusio: Mehr Wärme – viel weniger Eis Die Flora und Fauna der Polarregionen Ein Leben in der Kälte Das Leben im Meer Polare Ökosysteme auf dem Rückzug Conclusio: Hochspezialisiert und extrem gefährdet Politik und Wirtschaft in den Polarregionen Die Arktis und die Antarktis als politische Arenen Ein Wirtschaftsaufschwung mit Nebenwirkungen Conclusio: Wachsendes Interesse an den Polarregionen Gesamt-Conclusio Glossar Abkürzungen Quellenverzeichnis Mitwirkende Index Partner und Danksagung Abbildungsverzeichnis Impressum
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  • 49
    Call number: AWI G3-19-93211 ; AWI G3-19-93211(2. Ex.)
    Type of Medium: Dissertations
    Pages: viii, 220 Seiten , Illustrationen
    Language: English
    Note: Dissertation, Universität Potsdam, 2019 , Table of Contents Abstract Zusammenfassung 1 Introduction 1.1 Scientific background 1.1.1 Permafrost - terrestrial and subsea 1.1.2 Subsea permafrost distribution 1.1.3 Relevance in the context of a changing Arctic 1.1.4 Influences on subsea permafrost 1.2 Hypotheses and objectives 1.3 Thesis organization 2 Detection of subsea permafrost degradation rates 2.1 An overview of geophysical methods and studies in subsea permafrost 2.2 Geophysical objectives 2.3 Passive seismic techniques 2.3.1 H/V passive seismics 2.3.2 Passive seismic interferometry 2.4 Instrument design & marine tests on Sylt 2.5 Arctic feasibility test site around Muostakh Island 2.6 Arctic deployment for wide area detection around Muostakh Island 3 Modelling of subsea permafrost degradation processes 3.1 An overview on subsea permafrost modelling 3.2 Salt distribution- mechanisms beyond diffusional transport 3.3 Open questions in salt transport and permafrost degradation 3.4 Modelling objectives 3.5 Study sites 3.5.1 Primary study site: Cape Mamontov Klyk 3.5.2 Secondary study sites: Buor Khaya & Muostakh Island 3.6 Developing a model for subsea permafrost 3.6.1 Thermal regime of the subsurface: governing equations of conductive heat transfer 3.6.2 Model definitions: concentration and thaw depth 3.6.3 Saline effect on the state of permafrost 3.6.4 Salt transport: governing equation & parameterizations 3.6.5 Modelling approach 3.6.6 Model testing 3. 7 Results: Influence of model parameters on subsea permafrost degradation 3.8 Discussion and implications 3.8.1 Modelled inundation parameters 3.8.2 Further factors affecting subsea permafrost degradation 3.8.3 Implications 4 From local to regional scale: Amending sparsely distributed temperature records 4.1 An overview of borehole temperature reconstruction . 4.2 On the transferability of ground to air temperatures . 4.3 Reconstruction objectives 4.4 Borehole sites and climate 4.5 Borehole temperatures 4.6 Inversion method 4.6.1 Forward model 4.6.2 Optimization 4.6.3 Sensitivity analysis 4.7 Results and discussion of the reconstruction from the permafrost boreholes 4.7.1 Recoverable period 4.7.2 Optimization 4.7.3 Surface temperature reconstructions and fit 4.7.4 Inversion method's impact on character of solution & sensitivity to temperature history parameterization 4.8 Discussion of spatial differences and implications 4.8.1 Comparison to other temperature data 4.8.2 Site differences 4.8.3 Methodological considerations 4.8.4 Implications 5 Conclusion and outlook 5.1 Outlook Appendices A Modelling tests for H/V method configuration Bibliography Acknowledgements
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  • 50
    Call number: AWI A3-20-93434-2
    In: Meteorologische Abhandlungen / Institut für Meteorologie und Geophysik der Freien Universität Berlin, Band XXXII, Heft 2
    Type of Medium: Series available for loan
    Pages: 218 Seiten , Illustrationen
    Series Statement: Meteorologische Abhandlungen / Institut für Meteorologie und Geophysik der Freien Universität Berlin 32,2
    Language: German
    Note: Zugleich: Dissertation, Freie Unversität Berlin, [ca. 1963] , INHALTSVERZEICHNIS PROBLEMSTELLUNG UND ZIELSETZUNG 1. BEMERKUNGEN ZUM BEOBACHTUNGSGELÄNDE UND ZUM BEOBACHTUNGSMATERIAL 1.1 Das Beobachtungsgelände 1.2 Das Beobachtungsmaterial 2. HOMOGENITÄTSBETRACHTUNGEN 2.1 Temperatur 2.2 Niederschlag 2.3 Wind 2.4 Sonnenschein und Bewölkung 3. TEMPERATURVERHÄLTNISSE 3.1 Monats- und Jahreswerte 3.2 Tageswerte 3.3 Pentadenwerte 3.4 Häufigkeitsbetrachtungen 3.5 Interdiurne Veränderlichkeit 3.6 Der tägliche Gang 3.7 Vorkommen bestimmter Schwellenwerte 3.71 Frost- und Eistage 3.72 Sommer- und Tropentage 4. DER WASSERGEHALT DER LUFT 4.1 Monats- und Jahreswerte 4.2 Tageswerte 4.3 Häufigkeitsbetrachtungen 4.4 Interdiurne Veränderlichkeit 4.5 Der tägliche Gang 5. BEWÖLKUNGSVERHÄLTNISSE 5.1 Monats- und Jahreswerte 5.2 Tageswerte 5.3 Häufigkeitsbetrachtungen 5.4 Der tägliche Gang 5.5 Heitere und trübe Tage 5.6 Nebel 6. SONNENSCHEIN 6.1 Monats- und Jahreswerte 6.2 Tageswerte 6.3 Der tägliche Gang 7. NIEDERSCHLAGSVERHÄLTNISSE 7.1 Monats- und Jahreswerte 7.2 Niederschlagsbereitschaft 7.3 Tageswerte 7.4 Der tägliche Gang 7.5 Häufigkeitsbetrachtungen 7.6 Niederschlags- und Trockenperioden 7.7 Niederschlag und Wind· 7.8 Schneeverhältnisse 7.81 Schneefall und Schneedecke 7.82 Schneehöhe 7.9 Gewitter 8. WINDVERHÄLTNISSE 8.1 Windrichtung 8.2 Windgeschwindigkeit 8.21 Der jährliche Gang 8.22 Häufigkeitsbetrachtungen 8.23 Sturmtage und Windstillen 8.24 Der tägliche Gang 9.ZUSAMMENFASSUNG VERZEICHNIS DER TEXTTABELLEN VERZEICHNIS DER ABBILDUNGEN LITERATURVERZEICHNIS TABELLENANHANG
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  • 51
    Call number: AWI A3-20-93434
    In: Meteorologische Abhandlungen / Institut für Meteorologie und Geophysik der Freien Universität Berlin, Band XXXII, Heft 1
    Type of Medium: Series available for loan
    Pages: 121 Seiten , Illustrationen
    Series Statement: Meteorologische Abhandlungen / Institut für Meteorologie und Geophysik der Freien Universität Berlin 32,1
    Language: German
    Note: Zugleich: Dissertation, Freie Unversität Berlin, [ca. 1963] , INHALTSVERZEICHNIS PROBLEMSTELLUNG UND ZIELSETZUNG 1. BEMERKUNGEN ZUM BEOBACHTUNGSGELÄNDE UND ZUM BEOBACHTUNGSMATERIAL 1.1 Das Beobachtungsgelände 1.2 Das Beobachtungsmaterial 2. HOMOGENITÄTSBETRACHTUNGEN 2.1 Temperatur 2.2 Niederschlag 2.3 Wind 2.4 Sonnenschein und Bewölkung 3. TEMPERATURVERHÄLTNISSE 3.1 Monats- und Jahreswerte 3.2 Tageswerte 3.3 Pentadenwerte 3.4 Häufigkeitsbetrachtungen 3.5 Interdiurne Veränderlichkeit 3.6 Der tägliche Gang 3.7 Vorkommen bestimmter Schwellenwerte 3.71 Frost- und Eistage 3.72 Sommer- und Tropentage 4. DER WASSERGEHALT DER LUFT 4.1 Monats- und Jahreswerte 4.2 Tageswerte 4.3 Häufigkeitsbetrachtungen 4.4 Interdiurne Veränderlichkeit 4.5 Der tägliche Gang 5. BEWÖLKUNGSVERHÄLTNISSE 5.1 Monats- und Jahreswerte 5.2 Tageswerte 5.3 Häufigkeitsbetrachtungen 5.4 Der tägliche Gang 5.5 Heitere und trübe Tage 5.6 Nebel 6. SONNENSCHEIN 6.1 Monats- und Jahreswerte 6.2 Tageswerte 6.3 Der tägliche Gang 7. NIEDERSCHLAGSVERHÄLTNISSE 7.1 Monats- und Jahreswerte 7.2 Niederschlagsbereitschaft 7.3 Tageswerte 7.4 Der tägliche Gang 7.5 Häufigkeitsbetrachtungen 7.6 Niederschlags- und Trockenperioden 7.7 Niederschlag und Wind· 7.8 Schneeverhältnisse 7.81 Schneefall und Schneedecke 7.82 Schneehöhe 7.9 Gewitter 8. WINDVERHÄLTNISSE 8.1 Windrichtung 8.2 Windgeschwindigkeit 8.21 Der jährliche Gang 8.22 Häufigkeitsbetrachtungen 8.23 Sturmtage und Windstillen 8.24 Der tägliche Gang 9.ZUSAMMENFASSUNG VERZEICHNIS DER TEXTTABELLEN VERZEICHNIS DER ABBILDUNGEN LITERATURVERZEICHNIS TABELLENANHANG
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  • 52
    Call number: AWI G5-20-93987
    Type of Medium: Dissertations
    Pages: XVI, 91 Seiten , Illustrationen
    Language: English
    Note: Dissertation, Universität Potsdam, 2015 , Table of Contents Acknowledgements Abstract Zusammenfassung List of figures and tables List of Abbreviations 1. Introduction 1.1. Preface and thesis organization 1.2. Research motivation and relevance 1.3. Background knowledge 1.3.1. Terrigenous sediments 1.3.2. Hala Lake 1.3.3. The North Pacific 1.3.4. The Bering Sea 1.4. Aims and objectives 1.5. Methodological overview 1.5.1. Fieldwork 1.5.2. Age-depth modeling 1.5.3. Key proxies: grain size and clay minerals 1.5.4. Supplementary methodology: remote sensing, seismic sub-bottom profiling and geochemistry 1.6. Overview and status of the manuscripts 2 Manuscript 1 : Linkages between Quaternary climate change and sedimentary processes in Hala Lake, northern Tibetan Plateau, China Abstract 2.1. Introduction 2.2. Regional setting 2.3. Materials and methods 2.3.1. Remote sensing of the study area 2.3.2. Fieldwork 2.3.3. Radiocarbon dating of recovered sediment cores 2.3.4. Laboratory work 2.3.5. Statistical data treatment 2.4. Results and interpretation 2.4.1. Remote sensing on the spatial heterogeneity of lake ice and length of lake ice-free days 2.4.2. Seismic sub-bottom profiling 2.4.3. Age and sedimentary characteristics of the sediment core record 2.4.4. Grain-size modeling results 2.5. Discussion 2.5.1. Last Glacial Maximum (~24-17 cal. ka BP) 2.5.2. Time-equivalent of Heinrich Event 1 (~17-15.4 cal. ka BP) 2.5.3. Time-equivalent of Bolling-Allerod (~15.4-13 cal. ka BP) 2.5.4. Time-equivalent of Younger Dryas (~12.9-11.6 cal. ka BP) 2.5.5. Holocene (~11.6 cal. ka BP to present) 2.6. Conclusions Acknowledgments 3 Manuscript 2: Modern modes of provenance and dispersal of terrigenous sediments in the North Pacific and the Bering Sea: Implications and perspectives for palaeoenvironmental reconstructions Abstract 3.1. Introduction 3.2. Study area and regional setting 3.3. Material and methods 3.4. Results 3.4.1. Grain size distribution 3.4.2 Bulk mineralogy 3.4.3. Mineralogy of the clay fraction 3.5. Discussion 3.5.1. Sedimentary processes 3.5.2. Sediment provenance 3.5.3 Implications for palaeoenvironmental studies 3.6. Conclusions Acknowledgements 4 Manuscript 3: Provenance and dispersal of terrigenous sediments in the Bering Sea slope: Implications for late glacial land-ocean linkages Abstract 4.1. Introduction 4.2. Regional setting 4.3. Material and methods 4.4. Results and interpretation 4.4.1. Lithology and stratigraphy 4.4.2. Grain size distribution 4.4.3. Clay mineralogy 4.5. Discussion 4.5.1. Processes of terrigenous sediment supply 4.5.2. Detrital sediment sources 4.5.3. Detrital sediment supply and its relation to regionalpalaeoenvironmental changes 4.5.3.1. Time interval 32-15.7 ka BP: Background sedimentation at low sea level 4.5.3.2. Time interval 15.7-14.5 ka BP: Regional Meltwater Pulse 4.5.3.3. Time interval 14.5-12.9 ka BP: First biological bloom event 4.5.3.4. Time interval 12.9-6 ka BP: Cooling episode, rejuvenation of biological productivity and onset ofmodern conditions 4.5.4. Palaeoenvironmental implications 4.6. Conclusions Acknowledgements 5 Synthesis 5.1. The North Hemisphere synchronization of millennial climate oscillations during the last Glacial: teleconnections from Westerlies and thermohaline Circulation 5.2. The regional asynchronization of millennial climate oscillations during the last Glacial: discrepancy and "recording capacity" 5.3. Secondary connections between global climate transmissions: winter cyclone in the North Pacific 5.4. Future perspectives 6 References 7 Appendix Extended results: Core SO202-39-3 from the mid-latitude North Pacific 7.1. Material 7.2. Results 7.3. Oscillation of eolian sediment transport 7.4. Conclusions
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  • 53
    Call number: AWI G5-20-94097
    Type of Medium: Dissertations
    Pages: vi, 127 Seiten , Illustrationen, Diagramme, Karten
    Language: English
    Note: Dissertation, Universität Potsdam, 2020 , Table of contents Abstract Kurzfassung Table of contents Chapter 1: Introduction 1.1 The challenge of proxy uncertainties 1.2 Aims and approaches 1.3 Thesis outline and author's contributions Chapter 2: Comparing methods for analysing time scale dependent correlations in irregularly sampled time series data 2.1 Abstract 2.2 Introduction 2.3 Methods 2.3.1 Time scale dependency 2.3.2 Irregularity 2.3.3 Surrogate data 2.3.3.1 Construction of surrogate signals 2.3.3.2 Construction of irregular sampling 2.3.4 Evaluation of the estimation methods 2.4 Results 2.4.1 Correlation of red signal - white noise time series 2.4.2 Correlation of white signal - white noise time series 2.5 Discussion 2.5.1 Effect of irregularity and non-simultaneousness in sampling 2.5.2 Choosing the best method 2.5.2.1 Handling irregularity 2.5.2.2 Accounting for time scale dependency 2.5.3 Example application to observed proxy records 2.6 Conclusion 2.7 Computer code availability 2.8 Acknowledgements 2.9 Appendix 2-A. Significance test for time scale dependent correlation estimates Chapter 3: Empirical estimate of the signal content of Holocene temperature proxy records 3.1 Abstract 3.2 Introduction 3.3 Data 3.3,1 Proxy records 3.3.2 Climate model simulations 3.4 Method 3.4.1 Approach and assumptions 3.4.2 Spatial correlation structure of model vs. reanalysis data 3.4.3 Processing steps 3.4.3.1 Estimation of the spatial correlation structure 3.4.3.2 Estimation of the SNRs 3.5 Results 3.5.1 Spatial correlation structure and correlation decay length 3.5.2 SNR estimates 3.6 Discussion 3.6.1 Spatial correlation structure of model simulations 3.6.2 Finite number of proxy records 3.6.3 Proxy-specific recording of climate variables 3.6.4 Time uncertainty and non-climatic components of the proxy signal 3.6.5 Implications and future steps forward 3.7 Conclusion 3.8 Code availability 3.9 Data availability 3.10 Acknowledgements Chapter 4: Testing the consistency of Holocene and Last Glacial Maximum spatial correlations in temperature proxy records 4.1 Abstract 4.2 Introduction 4.3 Data 4.4 Method 4.4.1 Approach and assumptions 4.4.2 Holocene and LGM spatial correlation structure from climate model simulation 4.4.3 Effect of changes in climate variability on the predicted correlations 4.4.4 Effect of changes in time uncertainty on the predicted correlations 4.4.S Estimating the surrogate-based LGM spatial correlation and accounting for parameter uncertainty 4.5 Results 4.6 Discussion 4.6.1 Proxy-specific recording and finite number of records 4.6.2 Time uncertainty of proxy records 4.6.3 Contrary behaviour of U K'37 records 4.6.4 Spatial correlation structure and orbital trends 4.7 Conclusion 4.8 Acknowledgements 4.9 Appendix 4-A. Deriving the effect of a different signal variance on the correlation Chapter 5: Synthesis 5.1 Irregular sampling and time scale dependent correlations 5.2 Spatial correlation structure of proxy records 5.3 Consistency of spatial correlations for different climate states 5.4 Signal content of proxy records 5.5 Concluding remarks and Outlook Chapter A: Supplement of Chapter 3 - Empirical estimate of the signal content of Holocene temperature proxy records A.1 Supplementary Figures A.2 Supplementary Tables Chapter B: Supplement of Chapter 4 - Testing the consistency of Holocene and Last Glacial Maximum spatial correlations of temperature proxy records 8.1 Supplementary Figures 8.2 Supplementary Tables References Danksagung Eidesstattliche Erklärung
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  • 54
    Call number: AWI Bio-22-94774
    Description / Table of Contents: The collection of articles contains the latest materials on the state of study of biological resources of the State Nature Reserve Ust-Lensky and adjacent territories. Information on the distribution of fungi of resource value is given. An overview of the state of study of the algae of the Lena Delta and adjacent areas, an annotated list of algae, indicating the authors of the study and the collection points of the actual material. The distribution of tree and shrub vegetation (larch and alder) on the border of the tundra zone, within the protected area «Sokol» (right Bank of the Lena river) is considered. Data on the structure and distribution of the f ish and birds of the Lena Delta are presented. The information about the current state and features of the ecology of a large ungulates mammal introduced in the territory of the reserve — muskox is given.
    Description / Table of Contents: Сборник содержит новейшие материалы о состоянии изученности биологических ресурсов Усть-Ленского государственного природного заповедника и прилежащих к нему территорий. Представлены сведения о распространении грибов, имеющих ресурсное значение. Приведены обзор состояния изученности альгофлоры дельты р. Лена и прилежащих к ней территорий, а также аннотированный список водорослей с указанием авторов исследования и пунктов сбора фактического материала.
    Type of Medium: Monograph available for loan
    Pages: 111 Seiten , Illustrationen
    ISBN: 978-5-02-038848-2
    Series Statement: Serija "Ust'-Lenskij Gosudarstvennyj prirodnyj zapovednik: biologičeskoe raznoobrazie" = Series "State nature reserve Ust-Lensky: biological diversity" Vyp. 2
    Language: Russian
    Note: СОДЕРЖАНИЕ МИКОБИОТА УСТЬ-ЛЕНСКОГО ЗАПОВЕДНИКА / Михалева, Л.Г. ВОДОРОСЛИ УСТЬЕВОЙ ОБЛАСТИ РЕКИ ЛЕНА / Габышев, В.А., Царенко, П.М., Иванова, А.П. РАСПРОСТРАНЕНИЕ ЛИСТВЕННИЦЫ КАЯНДЕРА (LARIX CAJANDERI) И ОЛЬХОВНИКА (DUSCHEКIA FRUТICOSA) В ПРАВОБЕРЕЖЬЕ РЕКИ ЛЕНА, НА УЧАСТКЕ «СОКОЛ» УСТЬ-ЛЕНСКОГО ЗАПОВЕДНИКА / Николин, Е.Г., Якшина, И.А. РЫБЫ ДЕЛЬТЫ РЕКИ ЛЕНА НА ТЕРРИТОРИИ ЗАПОВЕДНИКА «УСТЬ-ЛЕНСКИЙ» / Корякин, П.Д. ПТИЦЫ ДЕЛЬТЫ РЕКИ ЛЕНА / Поздняков, В.И. ОВЦЕБЫК (OV/805 MOSCHATUS) В НИЖНЕЙ ЧАСТИ РЕКИ ЛЕНА / Кириллин, Е.В., Ануфриев, А.И., Охлопков, И.М. , CONTENT Mycobiota of the Ust-Lena reserve / Mikhaleva, L.G. Algae of the Lena river mouth area / Gabyshev, V.A., Tsarenko, P.M., Ivanova, A.P. Distribution of Cajander larch (Larix cajander) and alder (Duschekia Fruticosa) in the right bank of the Lena river in the Sokol site of the Ust-Lena reserve / Nikolin, E.G., Yakshina, I.A. Fishes of the Lena river delta in the territory of the Ust-Lensky reserve / Koryakin, P.D. Birds of the Lena delta / Pozdnyakov, V.I. Musk Ox (OV/805 MOSCHATUS) in the lower part of the Lena river / Kirillin, E.V., Anufriev, A.I., Okhlopkov, I.M.
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  • 55
    Monograph available for loan
    Monograph available for loan
    [Roskilde] : DCE - Danish Centre for Environment and Energy, Aarhus University
    Call number: AWI P5-19-92578
    Type of Medium: Monograph available for loan
    Pages: 148 Seiten , Illustrationen
    Edition: First edition
    ISBN: 978-87-93129-13-9
    Language: English
    Note: CONTENTS ABOUT THE AUTHORS PREFACE FROM THE ASSOCIATION OF POLAR EARLY CAREER SCIENTISTS PREFACE FROM THE INTERACT STATION MANAGERS’ FORUM ABOUT INTERACT ABOUT APECS INTERACT STATIONS INTRODUCTION 1. Getting started – Outlining your field project 1.1 Scientific rationale and objectives 1.2 Methods and data requirements 1.3 What scientific equipment will you need? 1.4 Study site(s) 1.5 Risk assessment 1.5.1 Risk identification 1.5.2 Risk assessment 1.5.3 Risk mitigation 1.5.4 Contingency plans 1.6 Time schedules 1.6.1 Logistical organisation 1.6.2 Fieldwork activities 1.7 Project budget 1.8 Data and sample management 1.8.1 Data management plan 1.8.2 Sample labelling 1.8.3 Field instrumentation 1.9 Environmental compliance 1.10 Output Chapter resources 2. Further planning – Practicalities and legal issues 2.1 Applying for access to the station 2.2 Transport to the station and conditions for visiting 2.2.1 Access to the station 2.2.2 Conditions for visiting 2.3 Visas and permits required by national authorities 2.3.1 Visas 2.3.2 Permits 2.4 Working with local communities 2.5 Equipment transport 2.6 Checklists and equipment 2.6.1 Checklists 2.6.2 Personal clothing 2.7 Import and export regulations 2.7.1 Import and export permits 2.7.2 Transporting hazardous goods 2.7.3 Handling cooled and frozen materials 2.8 Insurance 2.9 Check-ups and chronical illness 2.10 Training activities 2.11 Financial and other administrative issues 2.12 Final checks before leaving Chapter resources 3. Safety 3.1 General safety guidelines 3.2 Safety barriers 3.2.1 Knowledge, experience, and skills 3.2.2 Attitude and culture 3.2.3 Judgement and leadership 3.2.4 Trip plan 3.3 Education and training 3.4 Health and first aid 3.4.1 Medicine and chronic illness 3.4.2 First aid 3.5 Transport 3.5.1 Aircraft 3.5.2 Boats 3.5.3 Snowmobiles 3.5.4 Vehicles (Automobiles and ATV’s) 3.6 Risks at the station 3.6.1 Fire 3.6.2 In the kitchen 3.6.3 Electricity 3.6.4 Hygiene 3.6.5 Laboratory work and chemicals 3.6.6 Workshops and equipment use 3.7 Risks in the field and at the camp 3.7.1 Field camps 3.7.2 Cooking and water treatment 3.7.3 Firearms 3.7.4 Extreme activities 3.8 Natural hazards 3.8.1 Weather change 3.8.2 Glacier fieldwork 3.8.3 Snow avalanches and cornice falls 3.8.4 Steep terrain: Rock avalanches, rock falls, and mud slides 3.8.5 Sea-ice or frozen lakes and rivers 3.8.6 River crossings 3.8.7 Wildlife 3.9 Means of communication 3.9.1 Fieldwork plans and sign in/out boards 3.9.2 Routine calls 3.9.3 Non-routine calls 3.9.4 Emergency calls 3.10 Safety equipment 3.10.1 Communication equipment 3.10.2 Navigation equipment 3.10.3 Clothing 3.10.4 Field camp equipment 3.10.5 Specific safety equipment 3.11 Emergency preparedness Chapter resources 4. Arrival at the station and your time in the field 4.1 Getting to know your team 4.2 Arrival at the station 4.3 Working at field sites 4.4 In case something does not go according to plan 4.4.1 Handling delays 4.4.2 Handling conflicts 4.4.3 Harassment and discrimination 4.5 Environmental considerations 4.5.1 Pollution prevention 4.5.2 Waste management 4.5.3 Reducing energy use 4.5.4 Respect protected areas, fauna, and flora 4.6 Working with local communities 4.7 Communication with the outside world 4.8 Leaving the field Chapter resources 5. After fieldwork 5.1 Reporting to the station, funders, and local communities 5.2 Data preservation, backup, and submission APPENDICES Appendix A: Checklists Appendix B: Equipment lists Appendix C: Health risks
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  • 56
    Monograph available for loan
    Monograph available for loan
    Cham : Springer
    Call number: AWI P9-20-93591
    Description / Table of Contents: This book focuses in detail on all ecologically important aspects of the Kongsfjorden system such as the marine and atmospheric environment including long-term monitoring, Ecophysiology of individual species, structure and function of the ecosystem, ecological processes and biological communities. The contributed articles include review articles and research articles that have a wider approach and bring the current research up-to-date. This book will form a baseline for future work.
    Type of Medium: Monograph available for loan
    Pages: xiii, 562 Seiten , Illustrationen, Karten , 24 cm
    ISBN: 978-3-319-46423-7
    Series Statement: Advances in polar ecology 2
    Language: English
    Note: Contents: 1 The ecosystem of Kongsfjorden, Svalbard / Haakon Hop and Christian Wiencke Part I. Atmospheric conditions 2 The atmosphere above Ny-Ålesund : climate and global warming, ozone and surface UV radiation / Marion Maturilli, Inger Hanssen-Bauer, Roland Neuber, Markus Rex, and Kåre Edvardsen Part II. Oceanography, sea ice and underwater light regime 3 The Kongsfjorden Transect : seasonal and inter-annual variability in hydrography / Vigdis Tverberg, Ragnheid Skogseth, Finlo Cottier, Arild Sundfjord, Waldemar Walczowski, Mark E. Inall, Eva Falck, Olga Pavlova, and Frank Nilsen 4 Changes in sea-ice extent and thickness in Kongsfjorden, Svalbard (2003-2016) / Olga Pavlova, Sebastian Gerland, and Haakon Hop 5 The underwater light climate in Kongsfjorden and its ecological implications / Alexey K. Pavlov, Eva Leu, Dieter Hanelt, Inka Bartsch, Ulf Karsten, Stephen R. Hudson, Jean-Charles Gallet, Finlo Cottier, Jonathan H. Cohen, Jørgen Berge, Geir Johnsen, Marion Maturilli, Piotr Kowalczuk, Sławomir Sagan, Justyna Meler, and Mats A. Granskog Part III. Pelagic production, phytoplankton and zooplankton 6 Phytoplankton seasonal dynamics in Kongsfjorden, Svalbard and the adjacent shelf / Else N. Hegseth, Philipp Assmy, Józef M. Wiktor, Józef Wiktor Jr., Svein Kristiansen, Eva Leu, Vigdis Tverberg, Tove M. Gabrielsen, Ragnheid Skogseth, and Finlo Cottier 7 Zooplankton in Kongsfjorden (1996-2016) in relation to climate change / Haakon Hop, Anette Wold, Mikko Vihtakari, Malin Daase, Slawomir Kwasniewski, Marta Gluchowska, Silke Lischka, Friedrich Buchholz and Stig Falk-Petersen Part IV. Benthic microbes, macroalgae and fauna 8 Living on cold substrata : new insights and approaches in the study of microphytobenthos ecophysiology and ecology in Kongsfjorden / Ulf Karsten, Iris Schaub, Jana Woelfel, Duygu S. Sevilgen, Carolin Schlie, Burkhard Becker, Angela Wulff, Martin Graeve, and Heiko Wagner 9 Biodiversity of benthic macro- and microalgae from Svalbard with special focus on Kongsfjorden / Stein Fredriksen, Ulf Karsten, Inka Bartsch, Jana Woelfel, Miriam Koblowsky, Rhena Schumann, Siri Røang Moy, Robert S. Steneck, Józef M. Wiktor, Haakon Hop, and Christian Wiencke 10. Kelps and environmental changes in Kongsfjorden : Stress perception and responses / Kai Bischof, Christian Buschbaum, Stein Frederiksen, Francisco J. L. Gordillo, Sandra Heinrich, Carlos Jiménez, Cornelius Lütz, Markus Molis, Michael Y. Roleda, Max Schwanitz, and Christian Wiencke 11. Ecological drivers of and responses by Arctic benthic communities, with an emphasis on Kongsfjorden, Svalbard / Markus Molis, Frank Beuchel, Jürgen Laudien, Maria Włodarska-Kowalczuk, and Christian Buschbaum Part V. Arctic fjord ecosystem model and autonomous marine observatories. 12. Outline of an Arctic fjord ecosystem model for Kongsfjorden-Krossfjorden, Svalbard / Pedro Duarte, Jan Marcin Weslawski, and Haakon Hop 13. Autonomous marine observatories in Kongsfjorden, Svalbard / Haakon Hop, Finlo Cottier, and Jørgen Berge Part VI. Kongsfjorden as harbinger of the future Arctic 14. Kongsfjorden as harbinger of the future Arctic : knowns, unknowns and research priorities / Kai Bischof, Peter Convey, Pedro Duarte, Jean-Pierre Gattuso, Maria Granberg, Haakon Hop, Clara Hoppe, Carlos Jiménez, Leonid Lisitsyn, Brezo Martinez, Michael Y. Roleda, Peter Thor, Józef M. Wiktor, and Geir Wing Gabrielsen
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  • 57
    Call number: AWI Bio-20-93990
    Description / Table of Contents: Assumed comparable environmental conditions of early Mars and early Earth in 3.7 Ga ago – at a time when first fossil records of life on Earth could be found – suggest the possibility of life emerging on both planets in parallel. As conditions changed, the hypothetical life on Mars either became extinct or was able to adapt and might still exist in biological niches. The controversial discussed detection of methane on Mars led to the assumption, that it must have a recent origin – either abiotic through active volcanism or chemical processes, or through biogenic production. Spatial and seasonal variations in the detected methane concentrations and correlations between the presence of water vapor and geological features such as subsurface hydrogen, which are occurring together with locally increased detected concentrations of methane, gave fuel to the hypothesis of a possible biological source of the methane on Mars. Therefore the phylogenetically old methanogenic archaea, which have evolved under early Earth conditions, are often used as model-organisms in astrobiological studies to investigate the potential of life to exist in possible extraterrestrial habitats on our neighboring planet. In this thesis methanogenic archaea originating from two extreme environments on Earth were investigated to test their ability to be active under simulated Mars analog conditions. These extreme environments – the Siberian permafrost-affected soil and the chemoautotrophically based terrestrial ecosystem of Movile cave, Romania – are regarded as analogs for possible Martian (subsurface) habitats. Two novel species of methanogenic archaea isolated from these environments were described within the frame of this thesis. It could be shown that concentrations up to 1 wt% of Mars regolith analogs added to the growth media had a positive influence on the methane production rates of the tested methanogenic archaea, whereas higher concentrations resulted in decreasing rates. Nevertheless it was possible for the organisms to metabolize when incubated on water-saturated soil matrixes made of Mars regolith analogs without any additional nutrients. Long-term desiccation resistance of more than 400 days was proven with reincubation and indirect counting of viable cells through a combined treatment with propidium monoazide (to inactivate DNA of destroyed cells) and quantitative PCR. Phyllosilicate rich regolith analogs seem to be the best soil mixtures for the tested methanogenic archaea to be active under Mars analog conditions. Furthermore, in a simulation chamber experiment the activity of the permafrost methanogen strain Methanosarcina soligelidi SMA-21 under Mars subsurface analog conditions could be proven. Through real-time wavelength modulation spectroscopy measurements the increase in the methane concentration at temperatures down to -5 °C could be detected. The results presented in this thesis contribute to the understanding of the activity potential of methanogenic archaea under Mars analog conditions and therefore provide insights to the possible habitability of present-day Mars (near) subsurface environments. Thus, it contributes also to the data interpretation of future life detection missions on that planet. For example the ExoMars mission of the European Space Agency (ESA) and Roscosmos which is planned to be launched in 2018 and is aiming to drill in the Martian subsurface
    Type of Medium: Dissertations
    Pages: VI, 108 Blätter , Illustrationen
    Language: English
    Note: Dissertation, Universität Potsdam, 2015 , Table of contents Preface Table of contents Summary Zusammenfassung 1. Introduction 1.1. Environmental conditions on past and present Mars 1.2. Detection of methane on Mars 1.3. Methanogenic archaea 1.4. Description of study sites 1.5. Aims and approaches 1.6. Overview of the publications 2. Publication I: Methanosarcina soligelidi sp. nov., a desiccationandfreeze-thaw-resistant methanogenic archaeon from a Siberianpermafrost-affected soil 3. Publication II: Methanobacterium movilense sp. nov.,ahydrogenotrophic, secondary-alcohol-utilizing methanogen fromthe anoxic sediment of a subsurface lake 4. Publication III: Influence of Martian Regolith Analogs on the activityand growth of methanogenic archaea,with special regard to long-term desiccation 5. Publication IV: Laser spectroscopic real time measurements ofmethanogenic activity under simulated Martian subsurface conditions 6. Synthesis and Conclusion 6.1. Synthesis 6.2. Conclusion and future perspectives 7. References 8. Acknowledgments
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  • 58
    Call number: AWI A4-20-93991
    Description / Table of Contents: Over the last decades, the Arctic regions of the earth have warmed at a rate 2–3 times faster than the global average– a phenomenon called Arctic Amplification. A complex, non-linear interplay of physical processes and unique pecularities in the Arctic climate system is responsible for this, but the relative role of individual processes remains to be debated. This thesis focuses on the climate change and related processes on Svalbard, an archipelago in the North Atlantic sector of the Arctic, which is shown to be a "hotspot" for the amplified recent warming during winter. In this highly dynamical region, both oceanic and atmospheric large-scale transports of heat and moisture interfere with spatially inhomogenous surface conditions, and the corresponding energy exchange strongly shapes the atmospheric boundary layer. In the first part, Pan-Svalbard gradients in the surface air temperature (SAT) and sea ice extent (SIE) in the fjords are quantified and characterized. This analysis is based on observational data from meteorological stations, operational sea ice charts, and hydrographic observations from the adjacent ocean, which cover the 1980–2016 period. [...]
    Type of Medium: Dissertations
    Pages: xv, 123 Seiten , Illustrationen, Diagramme
    Language: English
    Note: Dissertation, Universität Potsdam, 2020 , CONTENTS 1 Introduction 1.1 Context: A rapidly changing Arctic 1.1.1 Documentation of recent changes in the Arctic 1.1.2 Research relevance 1.1.3 Objective: Svalbard as a hotspot for climate change 1.2 Physical Background 1.2.1 Radiation and surface energy balance 1.2.2 Peculiarities of the Arctic climate system 1.2.3 Role of atmospheric circulation 1.3 The regional setup on Svalbard 2 data and methods 2.1 Data description 2.1.1 Era-Interim atmospheric reanalysis 2.1.2 Svalbard Station Meteorology 2.1.3 Sea Ice Extent 2.1.4 Ocean data products 2.1.5 FLEXTRA Trajectories 2.2 Statistical Methods 2.2.1 Trend estimation 2.2.2 Correlation 2.2.3 Coefficient of Determination 3 state of surface climate parameters: pan-svalbard differences 3.1 Motivation 3.2 Surface air temperature 3.2.1 Annual cycle 3.2.2 Annual temperature range 3.2.3 Long-term trends 3.3 Fjord Sea Ice coverage 3.3.1 Climatology 3.3.2 Sea ice cover trends 3.3.3 Regional classification across Svalbard 3.3.4 Drivers of regional differences 3.4 Discussion and Conclusion 3.5 Current state of climate projections for the Svalbard region 4 Air mass back trajectories 4.1 Methodology 4.2 Winter 4.2.1 Source Regions of Ny-Ålesund Air 4.2.2 Circulation changes 4.2.3 Quantification of Advective Warming 4.3 Summer 4.3.1 Source Regions of Ny-Ålesund Air 4.3.2 Circulation changes 4.3.3 Quantification of advective cooling 4.3.4 Observational Case Study: May/June 2017 4.4 Discussion and Conclusion 5 Changing drivers of the arctic near surface temperature budget 5.1 Winter 5.2 Summer 5.3 Summary 6 Summary and conclusion A Details on calculations A.1 SLP composite Index A.2 Derivation of coefficient of determination A.3 Temperature effect of changing source regions over time B Supplementary figures Bibliography
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  • 59
    Dissertations
    Dissertations
    Stockholm : Department of Meteorology, Stockholm University
    Call number: AWI A4-21-94661
    Description / Table of Contents: The Arctic sea-ice cover plays an important role for the global climate system. Sea ice and the overlying snow cover reflect up to eight times more of the solar radiation than the underlying ocean. Hence, they are important for the global energy budget, and changes in the sea-ice cover can have a large impact on the Arctic climate and beyond. In the past 36 years the ice cover reduced significantly. The largest decline is observed in September, with a rate of more than 12% per decade. The negative trend is accompanied by large inter-annual sea-ice variability: in September the sea-ice extent varies by up to 27% between years. The processes controlling the large variability are not well understood. In this thesis the atmospheric contribution to the inter-annual sea-ice variability is explored. The focus is specifically on the thermodynamical effects: processes that are associated with a temperature change of the ice cover and sea-ice melt. Atmospheric reanalysis data are used to identify key processes, while experiments with a state-of-the-art climate model are conducted to understand their relevance throughout different seasons. It is found that in years with a very low September sea-ice extent more heat and moisture is transported in spring into the area that shows the largest ice variability. The increased transport is often associated with similar atmospheric circulation patterns. Increased heat and moisture over the Arctic result in positive anomalies of water vapor and clouds. These alter the amount of downward radiation at the surface: positive cloud anomalies allow for more longwave radiation and less shortwave radiation. In spring, when the solar inclination is small, positive cloud anomalies result in an increased surface warming and an earlier seasonal melt onset. This reduces the ice cover early in the season and allows for an increased absorption of solar radiation by the surface during summer, which further accelerates the ice melt. The modeling experiments indicate that cloud anomalies of similar magnitude during other seasons than spring would likely not result in below-average September sea ice. Based on these results a simple statistical sea-ice prediction model is designed, that only takes into account the downward longwave radiation anomalies or variables associated with it. Predictive skills are similar to those of more complex models, emphasizing the importance of the spring atmosphere for the annual sea-ice evolution.
    Type of Medium: Dissertations
    ISBN: 978-91-7649-228-4
    Language: English
    Note: Zugleich: Dissertation, Stockholm University, 2015 , Contents Abstract Zusammenfassung Sammanfattning List of Papers Author’s contribution 1 Introduction 2 Sea ice as part of the global climate system 2.1 The global climate system 2.2 Sea-ice characteristics 3 Methodology 3.1 Atmospheric reanalyses 3.2 Global climate models 4 Changes of the sea-ice cover 4.1 Long-term changes of the sea-ice cover 4.2 Inter-annual sea-ice variability 5 Conclusions and Outlook Acknowledgements References
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  • 60
    Call number: AWI G3-22-94850
    Description / Table of Contents: Книга посвящена дискуссионной проблеме, касающейся палеогеографического развития Российской Арктики. Проведено исследование эволюции криолитозоны в позднем кайнозое и предложена реконструкция палеогеографических обстановок нескольких эпох плейстоцена-голоцена, когда сформировались многие черты, определившие современный природный облик Севера России. В основу реконструкции положен анализ крупных залежных подземных льдов, широко распространенных в Арктике (на суше и на шельфе) в отложениях всех эпох плейстоцена и голоцена и обладающих высокой палеогеографической информативностью. Среди подземных льдов выявлен новый генетический тип - лед субмаринного происхождения. Получен ряд новых выводов. Показано, что развитие западного и восточного секторов Российской Арктики в плейстоцене проходило не одинаково: западный сектор большую часть плейстоцена развивался в условиях трансгрессивного режима и морского осадконакопления, восточный сектор - в течение всего периода в условиях континентального· режима и преимущественно озерно-аллювиального и лагунного осадконакопления. Оледенение в регионе в целом было невелико, а распространение покровных ледников ограничивалось с востока полуостровом Канин. Сделан вывод, отрицающий ведущую роль гляциоэвстатических процессов в колебаниях уровня Арктического бассейна и выводящий на первый план роль неотектонических процессов, связанных с рифтовой структурой Северного Ледовитого океана. Книга рассчитана на широкий круг специалистов, чья профессиональная деятельность связана с Арктикой и ее природой, а также же на всех тех, кто интересуется науками о Земле.
    Description / Table of Contents: Translation of the abstract: The book is devoted to a debatable problem concerning the paleogeographical development of the Russian Arctic. A study of the evolution of the cryolithozone in the late Cenozoic was carried out and a reconstruction was proposed paleogeographic settings of several epochs of the Pleistocene-Holocene, when many features were formed that determined the modern natural appearance of the North of Russia. The reconstruction is based on the analysis of large fallow underground ice, which is widespread in the Arctic (on land and on the shelf) in deposits of all Pleistocene and Holocene epochs and has a high paleogeographic information content. Among underground ice, a new genetic type has been identified - ice of submarine origin. A number of new conclusions have been obtained. It is shown that the development of the western and eastern sectors of the Russian Arctic in the Pleistocene was not the same: the western sector developed for most of the Pleistocene under the conditions of a transgressive regime and marine sedimentation, the eastern sector - throughout the entire period under the conditions of a continental regime and predominantly lacustrine-alluvial and lagoonal sedimentation . Glaciation in the region as a whole was not great, and the distribution of sheet glaciers was limited from the east by the Kanin Peninsula. A conclusion is drawn that denies the leading role of glacioeustatic processes in the level fluctuations of the Arctic Basin and brings to the fore the role of neotectonic processes associated with the rift structure of the Arctic Ocean. The book is intended for a wide range of professionals whose professional activities are related to the Arctic and its nature, as well as for all those who are interested in the Earth sciences.
    Type of Medium: Monograph available for loan
    Pages: 343 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 978-5-4344-0273-6
    Series Statement: Serija "Nauki o zemle"
    Language: Russian
    Note: ОГЛАВЛЕНИЕ Введение Концептуальная основа реконструкции древней криолитозоны Российского Севера А. Палеогеографическая информативность вечной мерзлоты и подземных льдов Б. Принцип актуализма в основе реконструкции Б.1. Пространственные закономерности и районирование современной криолитозоны Б.2. Современная криолитозона азиатской части России Б.3. Типы криолитозоны Субаэральная криолит озона Субгляциальная криолит озона Субмаринная криолитоона В. Основные методы исследования РАЗДЕЛ 1. ЗАПАДНЫЙ СЕКТОР РОССИЙСКОЙ АРКТИКИ. ПЛАСТОВЫЕ ЛЬДЫ Глава 1. Существующие представления о механизме образования пластовых льдов 1.1. Сегрегационный механизм формирования пластовых льдов (миграция поровых вод к фронту промерзания) Экспериментальные исследования и их обсуждение 1.2. Инъекционный механизм формирования пластовых льдов. Напорная миграция подземных вод 1.3. Захоронение в грунтах поверхностных льдов - глетчерных, морских, озерных, речных, наледей 1.4. Формирование пластовых льдов в субмаринных условиях 1.4.1. Температура донных отложений 1.4.2. Соленость (S) донных отложений 1.4.3. Условия промерзания донных отложений Материал по заливу Русская Гавань (Новая Земля) и его анализ. 1.4.4. Кристаллизация поровых растворов при промерзании донных отложений64 1.5. Формирование пластовых льдов в прибрежно-морских условиях Глава 2. Пластовые льды изначально субмаринного и прибрежно-морского генезиса. Анализ фактического материала А. Пластовые льды в отложениях морских равнин 2.1. Пластовые льды изначально субмаринного генезиса 2.1.1. Разрез в долине реки Тадибеяхи (западный Гыдан) как эталон субмаринных льдов Описание разреза Генезис Тадибеяхской ледяной залежи Формирование криогенных текстур Тадибеяхской залежи Заключение по Тадибеяхскому разрезу 2.1.2. Разрез близ пос. Марре-Сале (западный Ямал) с пла-стовыми льдами субмаринного генезиса 2.1.3. Другие разрезы с пластовыми льдами, отвечающими механизму формирования в субмаринных условиях (наблюдавшиеся автором и из литературы) Север Западной Сибири Северо-восточная часть Большеземельской тундры Северо-сибирская низменность Особенности строения среднеплейстоценовых морских отложений 2.2. Пластовые льды прибрежно-морского генезиса 2.2.1. Разрез Селякин мыс как эталон прибрежно-морских льдов 2.2.2. Другие разрезы с пластовыми льдами, отвечающими механизму формирования в прибрежно-морских условиях (наблюдавшиеся автором и из литературы) 2.3. Пластовые льды смешанного генезиса Б. Пластовые льды в отложениях Арктического шельфа 2.4. Пластовые льды в отложениях Баренцево-Карского шельфа 2.4.1. Условия формирования вечной мерзлоты с пластовыми льдами на Арктическом шельфе 2.4.2. Анализ криолитозоны шельфа с позиции предложенного выше (в разделе 1.4) механизма формирования суб-маринных льдов Баренцевоморский шельф. Новообразование вечной мерзлоты в донных отложениях у Карских Ворот Шельф Карского моря. Новообразование вечной мерзлоты на Русановской площади Реликтовая вечная мерзлота на Баренцево-Карском шельфе 2.4.3. Проявления шельфового типа льдообразования в разрезах современных морских арктических равнин 2.5. Выводы из анализа пластовых льдов субмаринного и прибрежно-морского генезиса Глава 3. Пластовые льды инъекционного генезиса. Анализ фактического материала Глава 4. Погребенные (первично наземные) пластовые льды. Анализ фактического материала 4.1. Разрез Ледяная гора как эталон пластовоой залежи погребенного глетчерного льда Описание разреза Анализ строения и некоторые особенности залежи Химический состав залежи Грануломинералогический состав залежи Генезис залежи Ледяная Гора и вмещающих ее пород 4.2. Другие разрезы с пластовыми льдами, отвечающие погребенному генезису (наблюдавшиеся автором и из литературы) Глава 5. Полигонально-жильные льды западного сектора Арктики Об информативности микростроения залежей льда Глава 6. Палеогеографические выводы из анализа подземных льдов для западного сектора Арктики РАЗДЕЛ 11. ВОСТОЧНЫЙ СЕКТОР РОССИЙСКОЙ АРКТИКИ. ПОЛИГОНАЛЬНО-ЖИЛЬНЫЕ ЛЬДЫ Глава 7. Полигонально-жильные льды и вмещающие их отложения на равнинах восточного сектора Арктики 7.1. Полигонально-жильные льды. Условия формирования и распространение 7.2. Спор о генезисе отложений, вмещающих ледовый комплекс 7.3. Другие типы залежных льдов и характер их распространения 7.3 .1. Инъекционные льды 7.3.2. Погребенные первично наземные льды 7.3.3. Прибрежно-морские льды Глава 8. Подземные льды на Восточно-Арктическом шельфе РАЗДЕЛ 111. СЕВЕРО-ВОСТОЧНЫЙ СЕКТОР РОССИЙСКОЙ АРКТИКИ. ПЛАСТОВЫЕ И ПОЛИГОНАЛЬНО-ЖИЛЬНЫЕ ЛЬДЫ Глава 9. Типы подземных залежных льдов и условия их залегания 9 .1. Пластовые льды. Их распространение и условия залегания 9 .1.1. Льды субмаринного и прибрежно-морского генезиса 9.1.2. Льды инъекционного генезиса 9.1.3. Погребенные (первично наземные) льды 9.2. Полигонально-жильные льды. Распространение и условия залегания 9.3. Некоторые выводы для региона РАЗДЕЛ IV. СОПОСТАВЛЕНИЕ МАТЕРИАЛА ИССЛЕДОВАНИЯ ПО ТРЕМ СЕКТОРАМ АРКТИКИ И ПАЛЕОГЕОГРАФИЧЕСКИЕ ВЫВОДЫ 1. О покровном оледенении на Российском Севере 2. О неодинаковом геологическом развитии западного и восточного секторов Российской Арктики 3. О роли гляциоэвстатики в колебаниях уровня океана 4. Тектоническая структура Северного Ледовитого океана как главная причина разнопланового развития Российской Арктики 5. Карта «Подземные льды криолитозоны России» РАЗДЕЛ V. ПАЛЕОГЕОГРАФИЯ РОССИЙСКОЙ АРКТИКИ В ПЛЕЙСТОЦЕНЕ И ГОЛОЦЕНЕ (РЕКОНСТРУКЦИЯ НА ОСНОВЕ ПРОВЕДЕННОГО АНАЛИЗА). ПАЛЕОМЕРЗЛОТНЫЕ КАРТЫ Глава 10. Палеогеография западного сектора Российской Арктики 10.1. Палеогеография и динамика криолитозоны Европейского Севера России 10.2. Палеогеография и динамика криолитозоны Западной Сибири Глава 11. Палеогеография азиатского сектора Российской Арктики 11.1. Палеогеография и динамика криолитозоны Средней Сибири 11.2. Палеогеография и динамика криолитозоны Восточной Сибири и Северо-Востока России Палеомерзлотные карты Российской Арктики Заключение Список литературы , In kyrillischer Schrift
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    Monograph available for loan
    Monograph available for loan
    Moskva : Izdatel'stvo "Nauka"
    Call number: AWI G2-24-95716
    Description / Table of Contents: Сборник включает материалы симпозиума "Поздиечетвертичная история и седиментогенез окраинных и внутренних морей", проведенного Океанографической комиссией АН СССР в 1977 г. На симпозиуме были рассмотрены результаты исследований последних лет в области стратиграфии и литологии четвертичных осадков морей СССР и шельфовой зоны Мирового океана, поздиечетвертичная история южных и дальневосточных морей СССР и некоторых морей европейского Севера. Сборник представляет интерес для геологов-четвертичников, географов, литологов, океанологов, морских геоморфологов и геологов.
    Description / Table of Contents: Translation of abstract: The collection includes materials from the symposium “Late Quaternary history and sedimentogenesis of marginal and inland seas”, held by the Oceanographic Commission of the USSR Academy of Sciences in 1977. The symposium examined the results of recent research in the field of stratigraphy and lithology of Quaternary sediments of the seas of the USSR and the shelf zone of the World Ocean, the late Quaternary history of the southern and the Far Eastern seas of the USSR and some seas of the European North. The collection is of interest to Quaternary geologists, geographers, lithologists, oceanologists, marine geomorphologists and geologists.
    Type of Medium: Monograph available for loan
    Pages: 211 Seiten , Illustrationen , 2 Kartenbeilagen
    Language: Russian
    Note: СОДЕРЖАНИЕ Особенности седиментогенеза на континентальных окраинах океанов и во внутренних морях / Ф. А. Щербаков Строение плиоцен-четвертичной толщи дна Баренцева моря на разрезе полуостров Рыбачий - острова Земля Франца-Иосифа / А. И. Блажчишин, Т. И. Линькова, О. В. Кириллов, Е. П. Шкатов К палеогеографии Баренцева моря в позднеледниковье и голоцене / Б. Н. Котенев Эволюция осадконакопления в прибрежных районах Баренцева и Белого морей в поздне- и послеледниковое время / В. Я. Евзеров Стратиграфия верхнечетвертичных отложений северной части Белого моря / Р. Н. Джиноридзе, Е. А. Кириенко, Л. В. Калугина, А. Е. Рыбалко, М. А. Спиридонов, Е. А. Спиридонова Палинологический и диатомовый анализ донных отложений Балтийского моря / Г. И. Клейменова, В. И. Хомутова, Е. М. Вишневская Стратиграфия позднечетвертичных отложений Черного моря / Ф. А. Щербаков, Е. В. Коренева, Э. К. Забелина Палеогеография Черноморского бассейна в позднечетвертичное время по данным палинологического анализа глубоководных отложений / А. В. Комаров Особенности седиментогенеза в морских подводных каньонах кавказского шельфа Черного моря / К. И. Джанджгава Об изменении биопродуктивности вод Черного моря в голоцене / Н. М. Андреева, Б. Н. Котенев, Л. Н. Розов Закономерности формирования и распределения водно-физических свойств глубоководных осадков Черного моря / В. А. Емельянов, А. Ю. Митропольский Геологическая история Керченского пролива в позднечетвертичное время / Е. Ф. Шнюков, В. М. Аленкин, А. В. Григорьев, А. Л. Путь, Н. А. Ломаев Отражение глубинных структур в морских четвертичных отложениях центральной части Азовского моря / В. Н. Семененко, О. Г. Сиденко Марганцеворудный процесс в позднем антропогене Азово-Черноморского бассейна / Г. Н. Орловский Палеоклиматы, водный баланс и уровни Черного и Каспийского морей в позднем плейстоцене-голоцене / И. Г. Авенариус Гипотетическая климатическая кривая основных этапов осадконакопления Каспийского моря в позднем плейстоцене / В.К Шкатова Процессы седиментогенеза в море Леванта / А. А. Мусса, А. Ю. Митропольский Петрографо-минералогическая характеристика современных отложений Бенгальского залива и Андаманского моря / Д. Е. Гершанович, А. И. Конюхов, И. А.Назаревич Терригенно-минералогические провинции прибрежно-шельфовой зоны Западного Индостана / О. К. Тареева Морфотектоника материкового побережья юга Дальнего Востока и морские трансгрессии позднего плейстоцена-голоцена / А. П. Кулаков Последние этапы голоценовой трансгрессии в бассейнах Японского и Охотского морей / А. М. Короткий, П. Ф. Бровко, И. И. Задкова, В. С. Пушкарь, И. Г. Шахгельдян Основные черты геологического строения шельфа и материкового склона Японского моря у побережья СССР / И. И. Берсенев, И. К. Пущин Четвертичные отложения шельфа Южного приморья на примере залива Петра Великого (Японское море) / Ю. Д. Марков Позднеnлейстоценовые бассейны Юго-Западной Камчатки и их связь с неотектоническими движениями / Р. Б. Крапивнер Криолитозона арктического шельфа Азии / З. Н. Антипина, Ф. Э. Арэ, В. В. Войченко, E. H. Молочушкин Опыт количественной оценки голоценовых тектонических движений в области шельфа / Н. Н. Дунаев Об использовании метода измерения магнитной восприимчивости морских осадков для восстановления условий их формирования на шельфе / Ю. В. Кочемасов , Translation of Table of Contents Features of sedimentogenesis on the continental margins of the oceans and in inland seas / F. A. Shcherbakov Structure of the Pliocene-Quaternary strata of the Barents Sea bottom in the section of the Rybachy Peninsula - Franz Josef Land Islands / A. I. Blazhchishin, T. I. Linkova, O. V. Kirillov, E. P. Shkatov On the paleogeography of the Barents Sea in the Late Glacial and Holocene / B. N. Kotenev Evolution of sedimentation in the coastal areas of the Barents and White Seas in late and post-glacial times / V. Ya. Evzerov Stratigraphy of Upper Quaternary sediments of the northern part of the White Sea / R. N. Dzhinoridze, E. A. Kiriyenko, L. V. Kalugina, A. E. Rybalko, M. A. Spiridonov, E. A. Spiridonova Palynological and diatom analysis of bottom sediments of the Baltic Sea / G. I. Kleimenova, V. I. Khomutova, E. M. Vishnevskaya Stratigraphy of Late Quaternary sediments of the Black Sea / F. A. Shcherbakov, E. V. Koreneva, E. K. Zabelina Paleogeography of the Black Sea basin in the late Quaternary according to palynological analysis of deep-sea sediments / A. V. Komarov Features of sedimentogenesis in marine underwater canyons of the Caucasian shelf of the Black Sea / K. I. Dzhandzhgava On changes in the bioproductivity of the Black Sea waters in the Holocene / N. M. Andreeva, B. N. Kotenev, L. N. Rozov Regularities of formation and distribution of water-physical properties of deep-sea sediments of the Black Sea / V. A. Emelyanov, A. Yu. Mitropolsky Geological history of the Kerch Strait in the late Quaternary / E. F. Shnyukov, V. M. Alenkin, A. V. Grigoriev, A. L. Put, N. A. Lomaev Reflection of deep structures in marine Quaternary sediments of the central part of the Azov Sea / V. N. Semenenko, O. G. Sidenko Manganese ore process in the late Anthropogene of the Azov-Black Sea basin / G. N. Orlovsky Paleoclimates, water balance and levels of the Black and Caspian Seas in the Late Pleistocene-Holocene / I. G. Avenarius Hypothetical climate curve of the main stages of sedimentation of the Caspian Sea in the Late Pleistocene / V.K Shkatova Processes of sedimentogenesis in the Levant Sea / A. A. Mussa, A. Yu. Mitropolsky Petrographic-mineralogical characteristics of modern sediments of the Bay of Bengal and the Andaman Sea / D. E. Gershanovich, A. I. Konyukhov, I. A. Nazarevich Terrigenous-mineralogical provinces of the coastal-shelf zone of Western Hindustan / O. K. Tareeva Morphotectonics of the continental coast of the south of the Far East and marine transgressions of the late Pleistocene-Holocene / A. P. Kulakov The last stages of the Holocene transgression in the basins of the Sea of Japan and the Sea of Okhotsk / A. M. Korotkiy, P. F. Brovko, I. I. Zadkova, V. S. Pushkar, I. G. Shakhgeldyan Main features of the geological structure of the shelf and continental slope of the Sea of Japan off the coast of the USSR / I. I. Bersenev, I. K. Pushchin Quaternary sediments of the Southern Primorye shelf using the example of Peter the Great Bay (Sea of Japan) / Yu. D. Markov Late Leistocene basins of Southwestern Kamchatka and their connection with neotectonic movements / R. B. Krapivner Cryolithozone of the Arctic shelf of Asia / Z. N. Antipina, F. E. Are, V. V. Voichenko, E. H. Molochushkin Experience in quantitative assessment of Holocene tectonic movements in the shelf area / N. N. Dunaev On the use of the method of measuring the magnetic susceptibility of marine sediments to restore the conditions of their formation on the shelf / Yu. V. Kochemasov , In kyrillischer Schrift
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    Call number: AWI P9-24-95719
    Type of Medium: Monograph available for loan
    Pages: 137 Seiten , überwiegend Illustrationen , 28 cm
    Language: Russian
    Note: In kyrillischer Schrift
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  • 63
    Call number: SR 90.0945(48)
    In: Meereskundliche Beobachtungen und Ergebnisse
    Type of Medium: Series available for loan
    Pages: 140 S.
    Series Statement: Meereskundliche Beobachtungen und Ergebnisse 48
    Language: German
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    Series available for loan
    Series available for loan
    Hamburg : Deutsches Hydrographisches Institut
    Associated volumes
    Call number: SR 90.0945(49)
    In: Meereskundliche Beobachtungen und Ergebnisse
    Type of Medium: Series available for loan
    Pages: 112 S.
    Series Statement: Meereskundliche Beobachtungen und Ergebnisse 49
    Language: German
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  • 65
    Series available for loan
    Series available for loan
    Rockville, Md. : U.S. Department of Commerce, National Oceanic and Atmospheric Administration
    Associated volumes
    Call number: SR 90.0946(5)
    In: NOAA technical memorandum
    Type of Medium: Series available for loan
    Pages: 39 S.
    Series Statement: NOAA Technical Memorandum NOS NGS 5
    Language: English
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  • 66
    Series available for loan
    Series available for loan
    München : Bayer. Landesvermessungsamt
    Associated volumes
    Call number: SR 90.1032(13-20)
    In: Veröffentlichungen der Bayerischen Kommission für die Internationale Erdmessung der Bayerischen Akademie der Wissenschaften
    Type of Medium: Series available for loan
    Pages: getr. Zählung
    Series Statement: Veröffentlichungen der Bayerischen Kommission für die Internationale Erdmessung der Bayerischen Akademie der Wissenschaften : Astronomisch-Geodätische Arbeiten 13-20
    Language: German
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    Call number: AWI G1-17-90601
    Description / Table of Contents: This innovative study presents concepts and problems in soil physics, and provides solutions using original computer programs. It provides a close examination of physical environments of soil, including an analysis of the movement of heat, water and gases. The authors employ the programming language Python, which is now widely used for numerical problem solving in the sciences. In contrast to the majority of the literature on soil physics, this text focuses on solving, not deriving, differential equations for transport. Using numerical procedures to solve differential equations allows the solution of quite difficult problems with fairly simple mathematical tools. Numerical methods convert differential into algebraic equations, which can be solved using conventional methods of linear algebra. Each chapter introduces a soil physics concept, and proceeds to develop computer programs to solve the equations and illustrate the points made in the discussion. Problems at the end of each chapter help the reader practise using the concepts introduced. The text is suitable for advanced undergraduates, graduates and researchers of soil physics. It employs an open source philosophy where computer code is presented, explained and discussed, and provides the reader with a full understanding of the solutions. Once mastered, the code can be adapted and expanded for the user's own models, fostering further developments. The Python tools provide a simple syntax, Object Oriented Programming techniques, powerful mathematical and numerical tools, and a user friendly environment.
    Type of Medium: Monograph available for loan
    Pages: X, 449 Seiten , Illustrationen
    Edition: First edition
    ISBN: 0199683093 , 9780199683093
    Language: English
    Note: Contents: 1 Introduction. - 2 Basic Physical Properties of Soil. - 2.1 Geometry of the Soil Matrix. - 2.2 Soil Structure. - 2.3 Fractal Geometry. - 2.4 Geometry of the Pore Space. - 2.5 Specific Surface Area. - 2.6 Averaging. - 2.7 Bulk Density, Water Content and Porosity. - 2.8 Relationships between Variables. - 2.9 Typical Values of Physical Properties. - 2.10 Volumes and Volumetric Fractions for a Soil Prism. - 2.11 Soil Solid Phase. - 2.12 Soil Texture. - 2.13 Sedimentation Law. - 2.14 Exercises. - 3 Soil Gas Phase and Gas Diffusion. - 3.1 Transport Equations. - 3.2 The Diffiisivity of Gases in Soil. - 3.3 Computing Gas Concentrations. - 3.4 Simulating One-Dimensional Steady-State Oxygen Diffusion in a Soil Profile. - 3.5 Numerical Implementation. - 3.6 Exercises. - 4 Soil Temperature and Heat Flow. - 4.1 Differential Equations for Heat Conduction. - 4.2 Soil Temperature Data. - 4.3 Numerical Solution of the Heat Flow Equation. - 4.4 Soil Thermal Properties. - 4.5 Numerical Implementation. - 4.6 Exercises. - 5 Soil Liquid Phase and Soil-Water Interactions. - 5.1 Properties of Water. - 5.2 Soil Water Potential. - 5.3 Water Potential-Water Content Relations. - 5.4 Liquid- and Vapour-Phase Equilibrium. - 5.5 Exercises. - 6 Steady-State Water Flow and Hydraulic Conductivity. - 6.1 Forces on Water in Porous Media. - 6.2 Water Flow in Saturated Soils. - 6.3 Saturated Hydraulic Conductivity. - 6.4 Unsaturated Hydraulic Conductivity. - 6.5 Exercises. - 7 Variation in Soil Properties. - 7.1 Frequency Distributions. - 7.2 Probability Density Functions. - 7.3 Transformations. - 7.4 Spatial Correlation. - 7.5 Approaches to Stochastic Modelling. - 7.6 Numerical Implementation. - 7.7 Exercises. - 8 Transient Water Flow. - 8.1 Mass Conservation Equation. - 8.2 Water Flow. - 8.3 Infiltration. - 8.4 Numerical Simulation of Infiltration. - 8.5 Numerical Implementation. - 8.6 Exercises. - 9 Triangulated Irregular Network. - 9.1 Digital Terrain Model. - 9.2 Triangulated Irregular Network. - 9.3 Numerical Implementation. - 9.4 Main. - 9.5 Triangulation. - 9.6 GIS Functions. - 9.7 Boundary. - 9.8 Geometrical Properties of Triangles. - 9.9 Delaunay Triangulation. - 9.10 Refinement. - 9.11 Utilities. - 9.12 Visualization. - 9.13 Exercise. - 10 Water Flow in Three Dimensions. - 10.1 Governing Equations. - 10.2 Numerical Formulation. - 10.3 Coupling Surface and Subsurface Flow. - 10.4 Numerical Implementation. - 10.5 Simulation. - 10.6 Visualization and Results. - 10.7 Exercises. - 11 Evaporation. - 11.1 General Concepts. - 11.2 Simultaneous Transport of Liquid and Vapour in Isothermal Soil. - 11.3 Modelling evaporation. - 11.4 Numerical Implementation. - 11.5 Exercises. - 12 Modelling Coupled Transport. - 12.1 Transport Equations. - 12.2 Partial Differential Equations. - 12.3 Surface Boundary Conditions. - 12.4 Numerical Implementation. - 12.5 Exercises. - 13 Solute Transport in Soils. - 13.1 Mass Flow. - 13.2 Diffusion. - 13.3 Hydrodynamic Dispersion. - 13.4 Advection-Dispersion Equation. - 13.5 Solute-Soil Interaction. - 13.6 Sources and Sinks of Solutes. - 13.7 Analytical Solutions. - 13.8 Numerical Solution. - 13.9 Numerical Implementation. - 13.10 Exercises. - 14 Transpiration and Plant-Water Relations. - 14.1 Soil Water Content and Soil Water Potential under a Vegetated Surface. - 14.2 General Features of Water Flow in the SPAC. - 14.3 Resistances to Water Flow within the Plant. - 14.4 Effect of Environment on Plant Resistance. - 14.5 Detailed Consideration of Soil and Root Resistances. - 14.6 Numerical Implementation. - 14.7 Exercises. - 15 Atmospheric Boundary Conditions. - 15.1 Radiation Balance at the Exchange Surface. - 15.2 Boundary-Layer Conductance for Heat and Water Vapour. - 15.3 Evapotranspiration and the Penman-Monteith Equation. - 15.4 Partitioning of Evapotranspiration. - 15.5 Exercise. - Appendix A: Basic Concepts and Examples of Python Programming. - A.1 Basic Python. - A.2 Basic Concepts of Computer Programming. - A.3 Data Representation: Variables. - A.4 Comments Rules and Indendation. - A.5 Arithmetic Expression. - A.6 Functions. - A.7 Flow Control. - A.8 File Input and Output. - A.9 Arrays. - A.10 Reading Date Time. - A.11 Object-Oriented Programming in Python. - A.12 Output and Visualization. - A.13 Exercises. - Appendix B: Computational Tools. - B.1 Numerical Differentiation. - B.2 Numerical Integration. - B.3 Linear Algebra. - B.4 Exercises. - List of Symbols. - List of Python Variables. - List of Python Projects. - References. - Index.
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  • 68
    Call number: AWI E1-89-0078
    Description / Table of Contents: Воспоминания ученых, летчиков, капитанов, полярников - людей, знавших Героя Советского Союза Михаила Михайловича Сомова, составляют сборник. Начиная его, А.Ф.Трешников вводит читателя в книгу рассказов, которые воссоздают биографию и облик незаурядного исследователя-полярника и организатора единую картину его жизни и работы. Книга рассчитана на широкий круг читателей.
    Description / Table of Contents: The memoirs of scientists, pilots, captains, polar explorers - people who knew the Hero of the Soviet Union Mikhail Mikhailovich Somov, make up a collection. Starting it, A.F. Treshnikov introduces the reader into a book of stories that recreate the biography and appearance of an outstanding polar explorer and organizer, a single picture of his life and work. The book is intended for a wide range of readers.
    Type of Medium: Monograph available for loan
    Pages: 166 Seiten , Illustrationen , 20 cm
    Language: Russian
    Note: In kyrillischer Schrift
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  • 69
    Monograph available for loan
    Monograph available for loan
    Leningrad : Gidrometeoizdat
    Call number: AWI P3-93-0280
    Description / Table of Contents: В монографии обобщаются результаты медицинских исследований, проведенных в Арктике и Антарктике отечественными и зарубежными. Широко использованы итоги десятилетних наблюдений за состоянием здоровья участников дрейфов научно-исследовательских станций "Северный полюс" и Советских антарктических экспедиций (1965-1973 гг.). В книге освещен ряд проблем, связанных с природой центральной части Арктического бассейна и Антарктиды, условиямн жизнеобеспечения полярников и деятельностью врачей экспедиции. В работе представлены специфические особенности адаптации человека к экстремальным условиям среды обитания. Существенное внимание уделено состоянию здоровья участников зимовок, особенностям течения заболеваний полярников, организации медико-санитарного обеспечения арктических и антарктических экспедиций. Монография рассчитана на врачей, руководителей станций, отрядов и специалистов, работающих в условиях Арктики, Антарктики, высокогорных районов СССР, а также в аналогичных условиях Крайнего Севера, Дальнего Востока, БАМа и др.
    Description / Table of Contents: The monograph summarizes the results of medical research carried out in the Arctic and Antarctic by domestic and foreign ones. The results of ten-year observations of the health status of participants in the drifts of the North Pole research stations and Soviet Antarctic expeditions (1965-1973) have been widely used. The book covers a number of problems related to the nature of the central part of the Arctic basin and Antarctica, the conditions of life support for polar explorers and the activities of the expedition's doctors. The paper presents the specific features of human adaptation to extreme environmental conditions. Considerable attention is paid to the health status of wintering participants, the peculiarities of the course of diseases of polar explorers, the organization of medical and sanitary support for Arctic and Antarctic expeditions. The monograph is intended for doctors, station leaders, detachments and specialists working in the Arctic, Antarctic, high-mountain regions of the USSR, as well as in similar conditions in the Far North, Far East, BAM, etc.
    Description / Table of Contents: Die Monographie fasst die Ergebnisse der medizinischen Forschung zusammen, die inländische und ausländische in der Arktis und Antarktis durchgeführt haben. Die Ergebnisse von zehnjährigen Beobachtungen des Gesundheitszustands von Teilnehmern an den Verwehungen der Nordpol-Forschungsstationen und der sowjetischen Antarktisexpeditionen (1965-1973) sind weit verbreitet. Das Buch behandelt eine Reihe von Problemen im Zusammenhang mit der Natur des zentralen Teils des arktischen Beckens und der Antarktis, den Lebensbedingungen für Polarforscher und den Aktivitäten der Ärzte der Expedition. Das Papier präsentiert die spezifischen Merkmale der menschlichen Anpassung an extreme Umweltbedingungen. Besonderes Augenmerk wird auf den Gesundheitszustand der überwinternden Teilnehmer, die Besonderheiten des Krankheitsverlaufs von Polarforschern und die Organisation der medizinischen und hygienischen Unterstützung für Expeditionen in die Arktis und Antarktis gelegt. Die Monographie richtet sich an Ärzte, Stationsleiter, Abteilungen und Spezialisten, die in der Arktis, Antarktis, Hochgebirgsregionen der UdSSR sowie unter ähnlichen Bedingungen im hohen Norden, im Fernen Osten, in der BAM usw. arbeiten.
    Type of Medium: Monograph available for loan
    Pages: 231 Seiten , Illustrationen , 22 cm
    Language: Russian
    Note: In kyrillischer Schrift
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  • 70
    Call number: AWI A17-96-0552-1 ; AWI A17-96-0552-2
    Type of Medium: Monograph available for loan
    Pages: Seiten 1-204, 257-526
    Edition: English edition updated, augmented and revised by the authors
    Edition: Fourth printing
    ISBN: 0262130629
    Uniform Title: Statističeskaja gidromechanika
    Language: English
    Note: Enthaltene Kapitel sind: Chapter 1 Laminar and turbulent flows Chapter 3 Reynolds equations and the semiempirical theories of turbulence Chapter 4 Turbulence in a thermally stratified medium
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  • 71
    Monograph available for loan
    Monograph available for loan
    Leningrad : Gidrometeoizdat
    Call number: AWI E3-90-0161 ; AWI 93-0315
    Type of Medium: Monograph available for loan
    Pages: 143 Seiten , Illustrationen , 21 cm
    Series Statement: Arktika, XX vek
    Language: Russian
    Note: In kyrillischer Schrift
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  • 72
    Monograph available for loan
    Monograph available for loan
    Moskva : Izdatel'stvo "Nauka"
    Call number: AWI E3-93-0316
    Type of Medium: Monograph available for loan
    Pages: 86 Seiten , Illustrationen , 21 cm
    Series Statement: Serija "Planeta Zemlja i Vselennaja"
    Language: Russian
    Note: In kyrillischer Schrift
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  • 73
    Monograph available for loan
    Monograph available for loan
    Leipzig : Brockhaus | Moskau : Verlag Progress
    Call number: AWI E2-89-0421
    Description / Table of Contents: Das größte Landraubtier unserer Erde ist der Eisbär - für die Forschung geradezu ein Modellfall für die Anpassungsfähigkeit des Organismus eines Lebewesens an die rauhen Bedingungen der Arktis. Immer wieder werden daher sowjetische Expeditionen entsandt, die die Aufgabe haben, das Verhalten des Eisbären in freier Wildbahn zu beobachten, einzelne Tiere zu wiegen, zu messen und zu markieren, um so tiefer in die Geheimnisse des „Eisbärendaseins" einzudringen. Besonders geeignet für solche Forschungen ist die Wrangel-lnsel vor der Nordostküste Sibiriens, ist sie doch die größte „Wochenstube" für Eisbären, die hier mitten im arktischen Winter ihre Jungen zur Welt bringen. Der weit über die Grenzen seines Heimatlandes hinaus bekannte Zoologe Prof. Dr. S. Uspenski, Teilnehmer vieler Expeditionen zur Wrangel-lnsel, berichtet hier in anschaulicher Weise über seine schwierige, oftmals nicht ungefährliche Arbeit und über die Rätsel, die der Eisbär auch heute noch der Wissenschaft aufgibt. Er mahnt in seinem Buch, mitzuhelfen, daß der Eisbär - diese größte Zierde der Arktis - auch künftigen Generationen der Menschheit erhalten bleibt. Uspenskis Wirken ist es mit zu danken, daß die Sowjetunion strenge Maßnahmen zum Schutz dieses vom Aussterben bedrohten Raubtieres ergriffen hat.
    Type of Medium: Monograph available for loan
    Pages: 203 Seiten , Illustrationen , 21 cm
    Edition: 3. Auflage
    ISBN: 3325001769 , 5-01-001792
    Uniform Title: Rodina belych medvedej 〈dt.〉
    Language: German
    Note: Inhalt Statt einer Einleitung An der Grenze der beiden Hemisphären Ein "Entbindungsheim" für die Eisbären Auf der Wrangel-Insel markiert Ihre Heimat ist das Eis Wohnheime für Vögel Weiße und Blaue Giganten des Eismeeres Schützt auch sie! Bildnachweis , Aus dem Russischen übersetzt
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  • 74
    Monograph available for loan
    Monograph available for loan
    Hamburg : Deutscher Wetterdienst, Seewetteramt
    Associated volumes
    Call number: AWI A19-96-0477 ; MOP Per 278(96)
    In: Einzelveröffentlichungen / Deutscher Wetterdienst, Seewetteramt Hamburg, Nr. 96
    Type of Medium: Monograph available for loan
    Pages: 128 Seiten
    ISSN: 0072-1603
    Series Statement: Einzelveröffentlichungen / Deutscher Wetterdienst, Seewetteramt Hamburg 96
    Language: German
    Note: Inhaltsverzeichnis: Die Unternehmen "Sachsen" 1940 und 1942 Unternehmen "Knospe" Spitzbergen 1941/42 Unternehmen "Nussbaum" Spitzbergen 1942/43 Unternehmen "Holzauge" Ostgrönland 1942/43 Unternehmen "Kreuzritter" Spitzbergen 1943/44 Unternehmen "Bassgeiger" Ostgrönland 1943/44 Unternehmen "Schatzgräber" Franz-Joseph-Land 1943/44 Unternehmen "Edelweiss" Ostgrönland 1944 Unternehmen "Edelweiss II" Ostgrönland 1944 Unternehmen "Haudegen" Spitzbergen 1944/45 Literaturverzeichnis Karte der Einsatzorte der Unternehmen
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  • 75
    Monograph available for loan
    Monograph available for loan
    New York : Academic Press
    Associated volumes
    Call number: AWI A6-94-0044
    In: Advances in geophysics, Volume 21
    Type of Medium: Monograph available for loan
    Pages: Seiten 87-230 , Illustrationen
    Series Statement: Advances in geophysics Volume 21
    Language: English
    Note: Contents 1. An Introduction to Mountain Effects 2. The Flow over Hills and the Generation of Mountain Waves 2.1 Buoyancy Forces 2.2 The Theory of Two- Dimensional Mountain Waves 2.3 Observations of Mountain Waves 2.4 The Three-Dimensional Flow over Isolated Hills 2.5 Large-Amplitude Mountains and Blocking 2.6 The Observed Barrier Effect of Mountains-The Fohn and Bora 2. 7 The Influence of the Boundary Layer on Mountain Flows 2.8 Slope Winds and Mountain and Valley Winds 3. The Flow near Mesoscale and Synoptic-Scale Mountains 3.1 Quasi-geostrophic Flow over a Mountain 3.2 The Effect of Inertia on the Flow over Mesoscale Mountains 3.3 Theories of Lee Cyclogenesis 4. Orographic Control of Precipitation 4.1 Observations of Rainfall Distribution 4.2 The Mechanism of Upslope Rain 4.3 The Redistribution of Rainfall by Small Hills 4.4 Orographic-Convective Precipitation 5. Planetary-Scale Mountain Waves 5.1 A Vertically Integrated Model of Topographically Forced Planetary Waves 5.2 The Vertical Structure of Planetary Waves on a ,8-Plane between Bounding Latitudes 5.3 Models of Stationary Planetary Waves Allowing Meridional Propagation and Lateral Variation in the Background Wind References
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  • 76
    Monograph available for loan
    Monograph available for loan
    London : Edward Arnold
    Call number: AWI G3-95-0152
    Type of Medium: Monograph available for loan
    Pages: VI, 406 Seiten , Illustrationen
    Edition: second edition
    ISBN: 0713161191
    Former Title: Periglacial processes and environments
    Language: English
    Note: Contents 1 Introduction I Definition of geocryology and periglacial II Objectives III Processes IV Environments V References 2 Environmental factors I Introduction II Basic factors Ill Dependent factors 3 Frozen ground I Introduction II Seasonally frozen ground Ill Permafrost 4 General frost-action processes I Introduction II Freezing process Ill Estimates of freezing and thawing IV Frost wedging V Frost heaving and frost thrusting VI Mass displacement VII Frost cracking VIII Sorting by frost action 5 Some periglacial forms I Introduction II Patterned ground Ill Periglacial involutions IV Stone pavements V String bogs VI Palsas VII Pingos 6 Mass-wasting processes and forms I Introduction lI Avalanching Ill Slushflow IV Thaw slumping V Frost creep VI Gelifluction VII Frost-creep and gelifluction deposits VIII Rock glaciers IX Taluses X Protalus ramparts 7 Nivation I Introduction II Nivation benches and hollows Ill Cryoplanation terraces and cryopediments 8 Slopewash I Introduction II Grèzes litées 9 Fluvial action I Introduction II Icings Ill Break-up phenomena IV Flat-floored valleys V Asymmetric valleys VI Dry valleys and dells 10 Lacustrine and marine action I Introduction II Lacustrine action Ill Marine action 11 Wind action I Introduction II Loess Ill Dunes IV Niveo-eolian deposits and forms V Deflation VI Ventifacts 12 Thermokarst I Introduction II Collapsed pingos Ill Thaw slumps IV Linear and polygonal troughs V Beaded drainage VI Thaw lakes VII Alases 13 Environmental overview 14 Environmental reconstructions I Introduction II Britain Ill Continental Europe IV USSR V Japan VI North America VII Southern Hemisphere VIII Some estimated temperature changes References Index
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  • 77
    Call number: SR 91.0236(B-2,5) / Regal 35
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 252 S.
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : B, Seismology 2 = 118
    Language: English
    Location: Magazine - must be ordered
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  • 78
    Series available for loan
    Series available for loan
    Warszawa [u.a.] : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(B-4,1) / Regal 35
    In: Publications of the Institute of Geophysics, Polish Academy of Sciences
    Type of Medium: Series available for loan
    Pages: 35 S.
    Series Statement: Publications of the Institute of Geophysics, Polish Academy of Sciences : B, Seismology 4 = 124
    Language: English
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  • 79
    Monograph available for loan
    Monograph available for loan
    [Erscheinungsort nicht ermittelbar] : [Verlag nicht ermittelbar]
    Call number: AWI P6-89-0490
    Type of Medium: Monograph available for loan
    Pages: 124, 5 Seiten
    Edition: Stand: 16. Oktober 1979
    Language: German
    Note: Inhaltsverzeichnis: Einleitung. - Internationale Zusammenarbeit. - Staatliche Zusammenarbeit. - Nichtstaatliche Zusammenarbeit. - I. Wissenschaftliches Programm. - 1. Astronomie. - 2. Biowissenschaften. - 2.1 Das marine Ökosystem und seine lebenden Ressourcen. - 2.1.1 Nährstoffangebot, Phytoplanktonproduktion und Zooplankton. - 2.1.2 Die Rolle des Benthos. - 2.1.3 Die Rolle der Mikroorganismen. - 2.1.4 Verbreitung und Häufigkeit der Robben im Packeis der Weddell-See. - 2.1.5 Verbreitung und Lebensgeschichte von Fischen und Tintenfischen. - 2.1.6 Großskalige Verbreitung und Verdriftung des Krill. - 2.1.7 Zusammensetzung und Verhalten von Krillschwärmen. - 2.1.8 Frischhaltung und Verarbeitung des Krill. - 2.2 Die Anpassung antarktischer Meeresorganismen an ihren Lebensraum. - 2.2.1 Experimentelle Arbeiten und Seeuntersuchungen zur Ökophysiologie des Krill. - 2.2.2 Temperaturregulation und Nahrungsbedarf bei antarktischen warmblütigen Tieren. - 2.2.3 Wachstum, Verdauung und Nahrungsausnutzung bei antarktischen Fischen. - 2.2.4 Frostschutzanpassungen von Meerestieren. - 2.2.5 Taxonomie antarktischer Meeresorganismen. - 2.3 Terrestrische Biologie in der Antarktis. - 2.3.1 Temperaturanpassungen der Brutbiologie antarktischer Vögel. - 2.3.2 Biochemische Grundlagen der Wachstumsvorgänge wechsewarmer Organismen unter sehr niedrigen Temperaturen. - 2.3.3 Nahrungsbiologie wechselwarmer Pflanzenfresser. - 2.3.4 Untersuchung der Flechten, Pilze und Bakterien in der Antarktis und auf den vorgelagerten Inseln. - 2.3.5 Photosynthese und heterotrophe Lebensweise von Pflanzen bei sehr niedrigen Temperaturen. - 2.4 Umweltschutz in der Antarktis. - 2.5 Humanbiologie und Medizin in Polargebieten. - 3. Geodäsie, Kartographie und Fernerkundung. - 3.1 Satelliten-Geodäsie. - 3.2 Geodätische Positionsbestimmung (Doppler Satellite Positioning). - 3.3 Geodätisch-kartographische Aufnahme eisfreier Gebiete. - 3.4 Fernerkundung mit Satelliten. - 4. Geologie und Geophysik. - 4.1 Studium der Driftvorgänge als Beitrag zur Erdgeschichte der Antarktis. - 4.1.1 Untersuchung magnetischer Strukturen mit aeromagnetischen Aufnahmen. - 4.1.2 Paläomagnetische Untersuchungen zur Driftgeschichte. - 4.1.3 Mikroerdbeben als Indikatoren für eine aktive Tektonik. - 4.1.4 Erdgezeiten und Eigenschwingungen der Erde. - 4.2 Untersuchungen über den Aufbau von Kruste und Mantel. - 4.2.1 Aufbau des Felsuntergrundes des transantarktischen Gebirgszuges im Bereich östlich des Filchner-Schelfeises. - 4.2.2 Aufbau des tieferen Untergrundes in der Weddell-See, dem Filchner/Ronne-Schelfeis und der Umrandung. - 4.2.3 Älteste und hochmetamorphe Gesteine der Ostantarktis. - 4.3 Stratigraphie, Tektonik und Magmatismus in den mobilen Bereichen. - 4.3.1 Mobile Randbereiche der Ostantarktis. - 4.3.2 Paläozoisches und mesozdisches Deckgebirge (Beacon-Obergruppe) im Transantarktischen Gebirge. - 4.3.3 Jungpaläozoische bis känozoische Orogene im Umkreis des Filchner/Ronne-Schelfeises. - 4.4 Studium exogener Vorgänge unter extrem kalten Bedingungen. - 4.4.1 Glazialgeologie und -geomorphologie. - 4.4.2 Verwitterung und Schuttbildung. - 4.5 Geowissenschaftliehe Meeresforschung. - 5. Glaziologie. - 5.1 Massenhaushalt und Dynamik des Filchner/Ronne-Schelfeises. - 5.2 Bestimmung der Eismächtigkeiten und ihrer zeitlichen Variation im Filchner/RonneSchelfeis-Sektor und der umrandeten Gebiete. - 5.3 Bestimmung des Aufbaus und der inneren Struktur des Filchner/Ronne-Schelfeises aus geophysikalischen Oberflächenmessungen. - 5.4 Untersuchungen zur Dynamik des Packeises im Weddell-Gyre. - 5.5 Physikalische Eigenschaften des Meereises. - 5.6 Glaziologische Bohrungen 5.7 Chemische Zusammensetzung und Akkumulationsgeschichte des antarktischen Background-Aerosol; globaler Transport von Spurengasen und Aerosolen. - 5.8 Untersuchung der elastischen und rheologischen Eigenschaften von Eis, seiner Wärmeleitfähigkeit und deformationsbedingten Textur. - 6. Hohe Atmosphäre und Extraterrestrische Physik. - 6.1 Untersuchung von Whistlern und VLF-Radioemissionen (Chorus, Hiss usw.), u.a. an konjugierten Punkten. - 6.2 Untersuchung erdmagnetischer Pulsationen an konjugierten Punkten. - 6.3 Untersuchung von Atmospherics zur genaueren Erfassung der weltweiten Gewitter-Aktivität. - 6.4 Messungen des luftelektrischen Feldes. - 6.5 Untersuchung der Ionosphäre vom Ballon aus im Licht der Mg+-Resonanzlinien. - 6.6 Messung der vertikalen Ozon-, Wasserdampf und Aerosolverteilung bis zu 30 km Höhe. - 6.7 Messungen der Emission in der infraroten 9,6 µ Ozonbande vom Boden aus. - 6.8 Weitere eventuell oder später mögliche Projekte. - 6.9 Vorschlag für eine erdmagnetische Grundausrüstung der Antarktisstation. - 6.10 Expedition zur Meteoritensuche. - 6.11 Untersuchung von Mikrometeoriten und kosmischem Staub. - 7. Meteorologie und Ozeanographie. - 7.1 Meteorologie. - 7.1.1 Atmosphärische Grenzschicht. - 7.1.2 Untersuchung der Stratosphären-Zirkulation. - 7.1.3 Langzeitmessungen von Spurengasen. - 7.1.4 Weitere Forschungsvorhaben. - 7.1.5 Wetterdienstliche Beobachtungen und Beratungen. - 7.1.6 Meteorologische Grundausüstung der Antarktisstation. - 7.2 Physikalische Ozeanographie. - 7.2.1 Bildung und Ausbreitung von Bodenwasser im atlantischen Sektor der Zirkum-Antarktischen See. - 7.2.2 Numerische Simulation der vertikalen Flüsse von Stoff, Energie und Impuls. - 7.2.3 Zeitskalen von Transportvorgängen im Tiefenwasser mit Hilfe von radioaktiven Spurenstoffen. - 7.2.4 Bestimmung von Schwermetallen im Antarktischen Ozean. - 7.2.5 Fischereiozeanographie im antarktischen Wasserring. - 7.2.6 Weitere Forschungsvorhaben. - 8. Ingenieurwissenschaften. - 8.1 Schiffstechnik. - 8.1.1 Ingenieurwissenschaftliches Meß- und Erprobungsprogramm über das Verhalten von Schiffen im Eis sowie technische Entwicklungen im Bau eisgehender Schiffe. - 8.2 Eisbergortung und Navigation. - 8.2.1 Eisbergortung. - 8.2.2 Entwicklung präziser Positionierungssysteme (auch für dynamische Positionierung), die eine ungestörte Signalübermittlung durch Eis- und Wasserschichten mit verschiedenen Dichtegehalten ermöglichen. - 8.3 Bautechnik I Einzelprojekte. - 8.4 Explorationstechniken. - 8.5 Weitere Themen.
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  • 80
    Call number: AWI G6-19-92375
    In: Berichte / Christian-Albrechts-Universität zu Kiel, Institut für Geowissenschaften, Nr. 9
    Type of Medium: Monograph available for loan
    Pages: 278 Seiten , Illustrationen
    ISSN: 0175-9302
    Series Statement: Berichte / Christian-Albrechts-Universität zu Kiel, Institut für Geowissenschaften 9
    Language: German
    Note: Zugleich: Dissertation, Christian-Albrechts-Universität zu Kiel, 1999 , INHALTSVERZEICHNIS 1. Einleitung 1.1 Kenntnisstand und offene Fragen 1.2 Fragestellung und Ziele dieser Arbeit 2. Umweltbedingungen in den Arbeitsgebieten 2.1 Hydrographie, Eisverhältnisse und NAO 2.2 Zur Variation von Wassertiefe und Breite der Dänemarkstraße und zur Vereisung Islands während des letzten Glazials 3. Methoden 3.1 Auswahl der Kernstationen 3.2 Probennahme und Analysen (Übersicht) 3.3 Zur Rekonstruktion von Paläobedingungen im Oberflächenwasser Zur Aussage stabiler Isotopenverhältnisse in planktischen Foraminiferen Zur Messung stabiler Isotopenverhältnisse Zur Massenspektrometrie Zur Rekonstruktion von Oberflächentemperaturen Alkane und Alkohole als Maß für Staubeintrag Eistranspmtiertes Material und vulkanische Aschen 3.4 Zur Rekonstruktion von Paläobedingungen im Zwischen-/ Tiefenwasser Häufigkeit von Cibicides- und anderen benthischen Arten (inkl. Taxonomie) Stabile Isotopenverhältnisse in benthischen Foraminiferen 3.5 AMS 14C-Datierungen Probenreinigung 3. 6 Hauptelementanalysen von vulkanischen Asche-Leithorizonten 3. 7 Geomagnetische Meßgrößen und magnetische Suszeptibiltät 3.8 Techniken zur Spektralanalyse 4. Methodische Ergebnisse 4.1 Zum Einfluß der Probenreinigung auf δ18O-/ δ13C-Werte 4.2 Probleme bei der langfristigen Reproduzierbarkeit von δ18O-Zeitreihen 4.3 Einfluß der Korngröße und Artendefinition planktischer Foraminiferen auf SST-Rekonstruktionen in hohen Breiten 4.4 Vergleich der stabilen Isotopenwerte von Cibicides lobatulus und Cibicidoides wuellerstorfi 5. Stratigraphische Grundlagen und Tiefenprofile der Klimasignale 5.1 Stratigraphische Korrelation zwischen parallel-gekernten GKG- und SL-/KL-Profilen 5.2 Flanktische δ18O-/ δ13C-Kurven, 14C-Alter und biostratigraphische Fixpunkte Westliches Islandbecken Kern PS2644 Kern PS2646 Kern PS2647 Kern 23351 Vøring-Plateau Kern 23071 Kern 23074 5.3 Benthische δ18O-/ δ13C-Werte in Kern PS2644 5.4 Siliziklastische Sedimentkomponenten: Eistransportiertes Material Westliches Islandbecken Kern PS2644 Kern PS2646 Kern PS2647 Vøring-Plateau Kern 23071 Kern 23074 5.5 Vulkanische Glasscherben in Kern PS2644: Wind- und Eiseintrag 5.6 Geochemie und Alter einzelner Tephralagen als Leithorizonte Westliches Islandbecken Kern PS2644 Kern PS2646 Kern PS2647 Vøring-Plateau Kern 23071 Kern 23074 5.7 Magnetische Suszeptibilität in den Kernen PS2644, PS2646 und PS2647 Kern PS2644 Kern PS2646 und PS2647 5.8 Geomagnetische Feldintensität und Richtungsänderungen in Kern PS2644 5.9 Variation von Planktonfauna und -flora Westliches Islandbecken: Kern PS2644 Kern PS2646 und PS2647 Vøring-Plateau: Kern 23071 und 23074 5.10 Benthische Foraminiferen in Kern PS2644 6. Entwicklung von Temperatur und Salzgehalt nördlich der Dänemark-Straße 6.1 Variation der Oberflächentemperatur nach Planktonforaminiferen 6.2 Variation der Oberflächentemperatur nach Uk37 6.3 Variation der Oberflächensalinität 7. Die Feinstratigraphie von Kern PS2644 als Basis für eine Eichung der 14C-Altersskala 22 - 55 ka 7.1 Korrelation zwischen den Klimasignalen in Kern PS2644 und der GISP2-Klimakurve zum Kalibrieren der 14C-Alter und Erstellen eines Altersmodells Tephrachronologische Marker Korrelationsparameter und -regeln Sonderfälle/ Probleme bei der Korrelation 7.2 Alters-stratigraphische Korrelation der Klimakurven von Kern 23071 und 23074 7.3 Variation der Altersanomalien zwischen 20 und 55 14C-ka 7.4 Variabilität des planktischen 14C-Reservoiralters in Schmelzwasserbeeinflußten Seegebieten Variation der planktischen 14C-Alter unmittelbar an der Basis von Heinrich-Ereignis 4 Unterschiede zwischen planktischen und benthischen 14C-Altern in der westlichen Islandsee. Zur Erklärung der inversen Altersdifferenzen 7.5 Differenz zwischen 14C- und Kalenderalter: Zeitliche Variation unter Einfluß des Erdmagnetfeldes - Modell und Befund 7.6 Sedimentationsraten der Kerne 23071, 23074 und PS2644 nach dem GISP2-Altersmodell Vøring-Plateau: Kerne 23071 und 23074 Südwest-Islandsee: Kern PS2644 8. Klimaoszillationen im Europäischen Nordmeer in der Zeit und Frequenzdomäne 8.1 "Der Einzelzyklus" in den Klimakurven von Kern PS2644 8.2 Zur Veränderlichkeit der Warm- und Kaltextreme sowie Zyklenlänge Besonderheiten in der Zyklenlänge Variation der Kalt-(Stadiale) Variation der Interstadiale 8.3 Periodizitäten der Klimasignale im Frequenzband der D.-Oe.-Zyklen. Der D.-Oe.-Zyklus von 1470 J., seine Multiplen und harmonischen Schwingungen Weitere Frequenzen: 1000-1150 Jahre- und 490- 510 Jahre-Zyklizitäten Höhere Frequenzen im Bereich von Jahrhunderten und Dekaden 8.4 Phasenbeziehungen und (örtliche) Steuemngsmechanismen der Dansgaard-Oeschger-Zyklen 9. Schlußfolgerungen Danksagung Literaturverzeichnis Anhang
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  • 81
    Call number: AWI G6-19-92461
    Type of Medium: Dissertations
    Pages: XVI, 203 Seiten , Illustrationen, Diagramme
    Language: English
    Note: Dissertation, Universität Potsdam, 2019 , Table of contents Abstract Zusammenfassung Abbreviations 1 Introduction 1.1 Scientific background 1.1.1 Permafrost in the Northern Hemisphere 1.1.2 The permafrost carbon climate feedback 1.1.3 Rapidly changing, deep permafrost environments 1.2 Aims of this dissertation 1.3 Investigated study areas 1.4 Basic method overview 1.4.1 Field work in the Arctic 1.4.2 Laboratory procedure 1.4.3 Analysis ofl andscape-scale carbon and nitrogen stocks 1.5 Thesis organization 1.6 Overview of publications 1.6.1 Publication#1 - Yedoma landscape publication 1.6.2 Publication#2 - Thermokarst lake sequence publication 1.6.3 Publication#3 - North Alaska Arctic river delta publication 1.6.4 Extended Abstract - Western Alaska river delta study 1.6.5 Appendices - Supplementary material and paper in preparation II Carbon and nitrogen pools in thermokarst-affected permafrost landscapes in Arctic Siberia 2.1 Abstract 2.2 Introduction 2.3 Material and methods 2.3.1 Study area 2.3.2 Field Work 2.3.3 Laboratory analysis 2.3.4 Landform classification and upscaling C and N pools 2.4 Results 2.4.1 Sedimentological results 2.4.2 Sampling site SOC and N stocks 2.4.3 Upscaling: Landscape SOC and N stocks 2.4.4 Radiocarbon dates 2.5 Discussion 2.5.1 Site specific soil organic C and N stock characteristics 2.5.2 Upscaling of C and N pools 2.5.3 Sediment and organic C accumulation rates 2.5.4 Characterizing soil organic carbon 2.5.5 The fate of organic carbon in thermokarst-affected yedoma in Siberia 2.6 Conclusions III Impacts of successive thermokarst lake stages on soil organic matter, Arctic Alaska 3.1 Abstract 3.2 Plain language summary 3.3 Introduction 3.4 Study site 3.5 Methods 3.5.1 Core collection 3.5.2 Biogeochemical analyses 3.5.3 Study area OC and N calculation 3.6 Results 3.6.1 Biogeochemistry 3.6.2 Sediment organic carbon and nitrogen stocks 3.6.3 Radiocarbon dates and carbon accumulation rates 3.6.4 Landscape C and N budget 3.7 Discussion 3.7.1 Impact of thermokarst lake dynamics on organic matter storage 3.7.2 High organic C and N stocks on the ACP 3.7.3 Landscape chronology 3.7.4 Organic matter accumulation 3.7.5 Future development 3.8 Conclusions IV Sedimentary and geochemical characteristics of two small permafrost-dominated Arctic river deltas in northern Alaska 4.1 Abstract 4.2 Introduction 4.3 Study area 4.4 Material and Methods 4.4.1 Soil organic carbon and soil nitrogen storage 4.4.2 Radiocarbon dating and organic carbon accumulation rates 4.4.3 Grain size distribution 4.4.4 Scaling carbon and nitrogen contents to landscape level 4.5 Results 4.5.1 Carbon and nitrogen contents 4.5.2 Radiocarbon dates and accumulation rates 4.5.3 Grain size distribution 4.5.4 Arctic river delta carbon and nitrogen storage 4.6. Discussion 4.6.1 Significance of carbon and nitrogen stocks in Arctic river deltas 4.6.2 SOC and SN distribution with depth 4.6.3 Sedimentary characteristics 4.6.3.1 Accumulation rates 4.6.3.2 Sediment distribution 4.6.4 Impacts of future changes 4.6.5 Significance of remotely sensed upscaling results 4.7 Conclusions V Soil carbon and nitrogen stocks in Arctic river deltas - New data for three Western Alaskan deltas 5.1 Abstract 5.2 Introduction 5.3 Study sites 5.4 Methods 5.5 Results and discussion 5.5 Conclusions VI Discussion 6.1 Interregional comparison 6.2 Changing thermokarst landscapes and their global impact 6.3 A growing C and N data base 6.4 Outlook - potential follow-up projects VII Synthesis VIII References Appendix A Synthesis of SOC and N inventories Appendix B Supplementary material to Chapter II Appendix C Supplementary material to Chapter III Appendix D Supplementary material to Chapter IV Appendix E Supplementary material to Chapter V Appendix F Arctic river delta data set - Version 1.0 Acknowledgements - Danksagung
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  • 82
    Call number: AWI P7-20-93379 ; PIK N 454-21-93379
    In: World ocean review, 6
    Type of Medium: Monograph available for loan
    Pages: 329 Seiten , Illustrationen
    ISBN: 978-3-86648-635-5
    Series Statement: World ocean review 6
    Language: English
    Note: Contents Preface The Arctic and Antarctic – natural realms at the poles A brief history of the polar regions The human conquest of the polar regions Conclusion: The Arctic and Antarctic – two fundamentally different polar regions The polar regions as components of the global climate system Why it is so cold in the polar regions Ice floes, ice sheets and the sea Conclusion: A chain reaction with an icy end Climate change impacts in the polar regions The pathways of heat Retreating ice Conclusion: More heat – much less ice Polar flora and fauna Living in the cold Marine life Polar ecosystems in retreat Conclusion: Highly specialized and greatly threatened Polar politics and commerce The Arctic and Antarctic as political arenas An economic boom with side effects Conclusion: Growing interest in the polar regions Overall Conclusion Glossary Abbreviations Bibliography Contributors Index Partners and Acknowledgements Table of figures Publication details
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  • 83
    Call number: AWI P6-82-0347
    Type of Medium: Monograph available for loan
    Pages: xi, 59 Seiten
    Language: English
    Note: CONTENTS Membership of the SCAR Group of Specialists (EAMREA) Preface Preface to 1977 unpublished report of the SCAR Group of Specialists (EAMREA) 1. Introduction 1.1 Terms of reference 1.2 Environmental impact statements 2. Assessment of mineral resource potential in Antarctica 3. Present knowledge of mineral occurrences and mineral resources of Antarctica 3.1 Assessment of onshore mineral resource potential 3.2 Estimation of regional mineral potential Geological factors Logistic factors Economic factors 3.3 Commodity classification Local consumption Metallic minerals Non-metallic minerals Fossil fuels (excluding petroleum) Geothermal energy Minerals for export Non-metallic minerals and fossil fuels Metallic minerals 3.4 Probable areas of Antarctica for onshore mineral exploration and exploitation 3.5 Offshore mineral potential of Antarctica 3.6 The continental shelf of Antarctica as a source of hydrocarbons 3.7 Problems of exploration and exploitation for hydrocarbons in the southern oceans 3.8 Economic feasibility of extracting hydrocarbons 3.9 Non-fuel mineral resource potential of the southern oceans Manganese nodules Icebergs as a fresh water resource 4. Possible environmental effects 4.1 Special features of the Antarctic environment Temperatures Winds Inversion layers The southern oceans The continental shelf Ice features Beaches Pack ice Forecasting the weather 4.2 Environmental threats to exploitable living resources Economic factors Threats to economically important species Threats to survival of species Threats to special ecosystems, habitats and communities Special habitats and communities Unique sites Summary 4.3 Impacts on the environment Oil extraction Oil extraction problems Ore mining Construction effects Terrestrial installations Sea floor installations Treatment of ores and oil Beneficiation processes Local energy sources Consequences of increased human activity Introduction of biological materials Towing of icebergs 4.4 Extent of effects Spatial effects Local effects Large-scale effects Scale of environmental effects: potential inputs Scale of environmental effects: potential consequences Temporal effects Transient effects Persistent effects 4.5 Communities and systems needing special protection Soils Abiotic soils Dry soils Maritime Antarctic soils Frozen soils Lakes and streams Terrestrial vegetation Terrestrial fauna 4.6 Impacts beyond the Antarctic Climatic change from industrial activities Air borne pollution from Antarctica Water borne pollution from Antarctica 5. Further research activities 5.1 Gaps in knowledge Environment Soils Terrestrial biota Climate Meteorology Oceanography Marine biology 5.2 Research needs Biodegradability of oil Controlled oil spills Chemical effects Experimental perturbations Controlled ecosystem experiments Surveys 5.3 Special protective measures Industrial controls Improved weather forecasting Legislative controls Routine monitoring Appendices A Recommendation VIII-14 of the Eighth Antarctic Treaty Meeting B SCAR Reponse to Recommendation VIII-14, including terms of reference of the EAMREA Group of Specialists References
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  • 84
    Call number: AWI G3-20-93465
    Type of Medium: Dissertations
    Pages: xi, 113, xxxvii Seiten , Illustrationen, Diagramme
    Language: English
    Note: Table of Contents Abstract Zusammenfassung List of Figures List of Tables 1. Introduction 1.1 Scientific Background 1.1.1 Arctic Climate Change 1.1.2 Permafrost Degradation 1.1.3 The Arctic Freshwater System and its Biogeochemistry 1.2 Objectives 1.3 Study Region and Methods 1.3.1 Study Area 1.3.2 Field Sampling and Measurements 1.3.3 Geochemical Analyses 1.3.4 Data Processing 1.4 Thesis Structure 1.5 Author Contributions 2. Spatial Variability of Dissolved Organic Carbon, Solutes and Suspended Sediment in Disturbed Low Arctic Coastal Watersheds 2.1 Abstract 2.2 Introduction 2.3 Study Site 2.4 Methods 2.4.1 Stream Monitoring 2.4.2 Mapping of Disturbances 2.4.3 Flux Estimates and Statistics 2.5 Results 2.5.1 Catchment Disturbance 2.5.2 Runoff and Hydrochemistry 2.5.3 Lateral Transport of Stream Water 2.5.4 Hydrochemical Composition and Fluxes in Nearby Streams 2.6 Discussion 2.6.1 Total Runoff and Water Quality 2.6.2 Water Quality Changes from Headwaters to Downstream 2.6.3 Changes in Hydrochemistry and Isotopic Composition over Time 2.6.4 Importance of Disturbances for Hydrochemistry 2.7 Conclusions 2.8 Supplementary Material 3. Terrestrial Colored Dissolved Organic Matter (cDOM) in Arctic Catchments - Characterizing Organic Matter Composition Across the Arctic 3.1 Introduction 3.2 Study Area 3.3 Methods 3.3.1 Field Methods and Hydrochemistry 3.3.2 Statistical Analyses 3.4 Results 3.4.1 Meteorological Conditions and General Hydrochemistry 3.4.2 DOC and cDOM Absorption Characteristics 3.4.3 Downstream Patterns of DOC and cDOM Along Longitudinal Transects 3.4.4 Temporal Trends ofDOC and cDOM with Changing Meteorological Conditions 3.5 Discussion 3.5.1 Limitations of cDOM Measurements from Terrestrial Sources 3.5.2 Catchment Processes and Biogeochemical Cycling 3.5.2.1 Regional Catchment Properties 3.5.2.2 Rainfall Events 3.5.2.3 Downstream Patterns and Impact of Permafrost Disturbance 3.5.3 Nature of cDOM-DOC Across the Terrestrial Arctic 3.6 Conclusion 3.7 Supplementary Material 4. Summer Rainfall DOC, Solute and Sediment Fluxes in a Small Arctic Coastal Catchment on Herschel Island (Yukon Territory, Canada) 4.1 Abstract 4.2 Introduction 4.3 Study Site 4.4 Methodology 4.4.1 Weather data 4.4.2 Hydrology 4.4.3 Suspended Sediment and Hydrochemistry 4.4.4 Flux Estimates and Statistics 4.5 Results 4.5.1 Meteorological Conditions 4.5.2 Streamflow and Electrical Conductivity 4.5.3 Transport of Suspended Sediment and Organic Matter 4.5.4 Solute Transport 4.5.5 Alluvial Fan Sampling 4.6 Discussion 4.6.1 Hydrological Response 4.6.2 Water Quality and Fluxes 4.6.3 Rainfall Response and Flow Pathways 4.7 Conclusions 4.8 Supplementary Material 5. Synthesis 5.1 Impacts of Permafrost Degradation on Stream Biogeochemistry 5.2 Controls on DOM Quality across the Arctic 5.3 Biogeochemical Fluxes from Small Coastal Catchments to the Arctic Ocean 5.4 Challenges 5.5 Outlook Acronyms Bibliography Acknowledgements Eidesstattliche Erklärung
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  • 85
    Monograph available for loan
    Monograph available for loan
    Bonn : Rheinwerk Verlag
    Call number: AWI S4-20-94030
    Type of Medium: Monograph available for loan
    Pages: 1380 Seiten , Illustrationen , 24 cm x 19 cm
    Edition: 2., aktualisierte und erweiterte Auflage
    ISBN: 3836263858 , 9783836263856
    Series Statement: Rheinwerk Computing
    URL: Cover
    Language: German
    Note: Inhalt TEIL I Brave New World? 1 Die neue alte Welt der Virtualisierung 1.1 V2 1.2 Vorbemerkungen 1.2.1 Verwendete Formatierungen 1.2.2 Weiterführende Hinweise 1.2.3 Beispieldateien 1.3 Was dieses Buch sein/nicht sein soll 1.3.1 Was es sein soll 1.3.2 Was es nicht sein soll und nicht ist 1.4 Wie dieses Buch zu lesen ist 1.4.1 Grundsätzliches 1.4.2 Kapitel/Teile und Zielgruppen im groben Überblick 1.5 Welche Teile des Buchs sind neu, welche wurden stark überabeitet? 1.6 In welchen Kapiteln finde ich welche Themen? 1.6.1 Themen nach Abschnitten/Schlagworten mit grundlegenden Erklärungen 1.7 Verwendete Plattformen und Versionsspezifikationen 1.7.1 Vorbetrachtungen 1.7.2 Container-OS und die Zukunft 2 Container 2.1 Warum Container? 2.2 Microservices, Container und der pawlowsche Hund 2.2.1 Wie erkläre ich es meinem CEO? 2.2.2 Die neue Welt der Microservices: Admins, DevOps-und Container-Teams 2.2.3 Die neue Welt der Microservices: aus der Perspektive der CEOs/Entscheider 2.3 Continuous Delivery/Continuous Integration und DevOps 2.3.1 Semi- oder vollautomatisch:Continuous Integration/Continuous Delivery 2.3.2 CD/CI und das Big-Bang-Release-Problem 2.4 Continuous Delivery 2.4.1 Was verstehen wir darunter? 2.4.2 Continuous Delivery Pipelines 2.4.3 Commit-Stage 2.4.4 Acceptance-Test-Stage 2.4.5 Exkurs: Acceptance-Tests und Dreieinigkeit 2.4.6 Load/Capacity-, Security- und Exploration-Tests 2.4.7 Rollout/Go-Live 2.4.8 Die Gates 2.4.9 Fazit: Wo kann CD nutzbringend eingesetzt werden? 2.4.10 Jenkins-Integration in Kubernetes 2.5 DevOps: Gewaltenteilung oder Kooperation? 2.5.1 Grundsätzliche Betrachtungen 2.5.2 Vom DevOps-Paradigma/Hype zum Unwort 2.5.3 Kommunikationsblackouts im DevOps-Team 2.5.4 Das konkrete DevOps-Problem im klassischen Umfeld 2.5.5 »Works for me« und anderer Nonsens im DevOps-Business - und ein Ausweg? 2.5.6 BizDevOps - und noch eine Silbe TEIL II Single-Node Container-Systeme 3 Container-Engines und -Plattformen, Basicsund Konzepte 3.1 World of Tiers - Teil 1 3.2 Container-Basics 3.2.1 Namespaces, Security und Container-Konzepte 3.2.2 Enter Namespace - nsenter 3.2.3 Namespaces und Sicherheit? 3.3 VMs - obsolet durch Container? 3.3.1 Container vs. VM 3.3.2 Packungsdichte und Ressourcen 3.4 Wann sind Container sinnvoll? 3.5 Container-Engines/Container-Runtime und Komponenten im Überblick 3.5.1 Von LXC zu Docker 3.5.2 Docker 3.5.3 libcontainer, containerd und runC 3.5.4 runC, containerd und shim im Docker-Kontext 3.5.5 runC als eigenständiges Container-Tool 3.5.6 (cri-)containerd - Wirrwarr im Kubernetes-Kontext 3.5.7 LXD 3.5.8 CoreOS bzw. Container-Linux und Rocket/rkt 3.5.9 CRI-O 3.6 Überblick der Container-Formate 3.6.1 OCI -... Standardisierung? 3.6.2 Runtime Specs 3.6.3 Image-Format 3.6.4 Das BSI und die lieben Container 3.6.5 Fazit 3.7 Container: eine funktionale Übersicht 3.7.1 Aufbau eines Container-Hosts 3.7.2 Docker-Images 3.7.3 Anzahl der Layer 4 Docker 4.1 Docker-Versionen 4.1.1 Docker-Versionen, wichtige Meilensteine und Inkompatibilitäten 4.1.2 Docker-LTS-Versionen und die Enterprise Edition 4.1.3 DDC, CE, EEB, EES, EEA - und der beständige Wechsel im Docker-Land 4.1.4 Betrachtete Plattformen und Docker-Versionen 4.1.5 Funktionaler Überblick: Docker CU, dockerd, Registry 4.2 Docker-Installation 4.2.1 Paketnamen und Dependencies 4.2.2 Docker-Installation unter Ubuntu 18.04 LTS 4.2.3 Docker-Installation unter RHEL/CentOS ≥ 7.4 4.2.4 Docker-Version unter CaaSP 4.2.5 CaaSP- und BTRFS/Docker-Problematiken 4.2.6 CaaSP-spezifische Docker-Konfigurationsdateien 4.2.7 Installation der Commercially Supported Docker-Engine 4.2.8 Docker CE, EE 4.2.9 Storage-Driver-Nonsens unter Docker CE und EE 4.2.10 Distributionsunabhängige Installation von Docker 4.3 Deinstallation, Upgrade oder Umstellung auf andere Storage-Backends 4.3.1 Deinstallation 4.3.2 Upgrade 4.3.3 Umstellung des Storage-Backends 4.4 Docker und systemd-lntegration 4.4.1 systemd-Service-Units für Docker 4.5 Docker und Proxies 4.5.1 Docker-Daemon hinter einem Proxy betreiben 4.5.2 Docker-Client-Settings für Proxies (Docker ≥ 17.07) 4.5.3 Docker-Client- bzw. Image-Settings für Proxies (Docker ≤ 17.06) 4.6 Docker im Betrieb 4.6.1 Permanente Diensteinbindung 4.6.2 Lokale HA 4.6.3 Verbose Mode 4.6.4 Status-Überprüfung/Features 4.6.5 Docker-Systeminformationen 4.6.6 Docker-Daemon-Konfigurationsmöglichkeiten 4.6.7 Mögliche Startoptionen/Schalter des Docker-Daemons 4.6.8 Konfiguration per /etc/docker/daemon.json 4.6.9 Alternatives Docker-Verzeichnis als Konfigurationsbeispiel 4.6.10 Docker-CLI-Konfiguration 4.6.11 Docker-Plugins 4.7 Docker-Image-Management - Basics 4.7.1 Auszug der Docker-CLI-Subkommandos 4.7.2 CLI-Strukturen seit Docker 1.13 4.7.3 docker Container- und image-Subkommandos 4.7.4 Einfaches Image-Management 4.7.5 Docker-Namensräume und das Default-Registry-Problem 4.7.6 Docker-Images (unter docker.io) suchen 4.7.7 Image-Schema-Versionen 4.7.8 Offizielles CentOS-lmage von docker.io pullen 4.7.9 Lokal verfügbare Docker-Images listen und filtern 4.7.10 Meta-Informationen von lokalen Images abfragen 4.7.11 Images löschen 4.7.12 docker save & load Images 4.7.13 Dangling Images: The good and the bad 〈none〉:〈none〉 4.7.14 Build-History eines Images inspizieren 4.8 Trusted Images 4.8.1 Ein eigenes, generisches Trusted Basis-Image erzeugen 4.8.2 Gescriptete Image-Erzeugung (YUM Based) 4.8.3 Mikro-Image »from scratch« mit go 4.8.4 Red Hats Container Health Index 4.8.5 Mikro-Image einer Legacy-Applikation 4.8.6 Transformation von Legacy-Apps in Images 4.8.7 Images: grundlegende Security-relevante Betrachtungen 4.9 Betrieb und Management von Docker-Containern 4.9.1 Kurzübersicht der relevanten Docker-CLI-Kommandos 4.9.2 Neues »docker container«-Subkommando 4.9.3 docker history 4.9.4 Container starten-docker [Container] run 4.9.5 Docker-Registry, Image, Container run, lokaler Datastore -the Big Picture 4.9.6 (Random-)Container-Names und automatische Löschung (run -rm ) 4.9.7 Container-HA: automatische Restarts 4.9.8 docker [Container] run --readonly 4.9.9 Detached Container im Hintergrund starten 4.9.10 Auflisten von Container-Instanzen - docker ps 4.9.11 Starten und Stoppen existierender Container 4.9.12 docker [Container] rename 4.9.13 Container-Instanzen löschen: docker [Container] rm/prune 4.9.14 docker [Container] attach-Optionen 4.9.15 Befehle im laufenden Container ausführen: docker [Container] exec 4.9.16 docker [Container] create 4.9.17 Container-Instanzen exportieren und als Images importieren 4.9.18 Kopieren von Daten: Container zwischen Host 4.9.19 docker Checkpoint 4.10 Prozessverwaltung im Container 4.10.1 docker top 4.10.2 Prozesse im Container beenden 4.10.3 docker wait und Return/Exit-Codes 4.10.4 Den Container und alle in ihm laufenden Prozesse temporär pausieren 4.10.5 Live-Events mit docker events 4.11 Container-Capabilities/Privilegien 4.11.1 Prüfung und Auslesen der Capabilities 4.12 Docker Logging 4.12.1 Log-Driver 4.12.2 Zentralisierte Logs für Container-Instanzen 4.12.3 Container-Logs mit docker logs 4.13 Einfache Applikationen im Container 4.13.1 Vorbetrachtungen 4.13.2 Installation von Applikationen im gestarteten Container 4.14 Image-Modifikationen committen und taggen 4.14.1 Commit- Beispiel 4.14.2 Nachträgliches Taggen von Images 4.14.3 Exkurs - die :latest-Problematik 4.15 Layer-Strukturen 4.15.1 Verzeichnisstrukturen auf dem lokalen Docker-Host 4.15.2 Was ist beim letzten Commit passiert, wo liegt der neue Layer? 4.15.3 IDs der RW-Layer von gestarteten Containern und Querbezüge 4.15.4 Layer-Analyse und Flattening (Zusammenfassung) 4.16 Limitierte Container-Instanzen 4.16.1 docker [Container] stats 4.16.2 Mögliche Limitierungen 4.16.3 Beispiele aus der Praxis für limitierte Container-Instanzen 4.16.4 Nachträgliche Limitierung 4.17 Docker-Images erstellen (docker build) und verwalten 4.17.1 Best-Practice/File-Hierarchie 4.17.2 docker [image] build 4.17.3 Dockerfile-Direktiven/Instruktionen 4.17.4 Build-Anwendungsbeispiel: Apache-Container 4.17.5 Bu
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