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  • 2016  (787,937)
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  • 1
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    Unknown
    Wien : [Verlag nicht ermittelbar] ; 22.1910/25(1925),3; 23.1914/31(1929/31),2-3; 24.1927,1-2; 25.1939,1; 26.1948,1; 27.1971-Band 76 (2022)
    Call number: S 91.1179
    ISSN: 0375-5797 , 0378-0864
    Parallel Title: 35=2 von European Conodont Symposium (ZDB) Guidebook, abstracts / European Conodont Symposium
    Parallel Title: 41=2 von Workshop on Agglutinated Foraminifera (ZDB) Proceedings / Workshop on Agglutinated Foraminifera. Geologische Bundesanstalt
    Parallel Title: 39=3 von International Nannoplankton Association Proceedings of the ... International Nannoplankton Association conference
    Parallel Title: 60=11 von Deutsche Gesellschaft für Geowissenschaften. Fachsektion GeoTop Internationale Jahrestagung der Fachsektion GeoTop der Deutschen Gesellschaft für Geowissenschaften
    Former Title: Vorg. Geologische Reichsanstalt Abhandlungen der Kaiserlich-Königlichen Geologischen Reichsanstalt, Wien
    Subsequent Title: Fortgesetzt durch Abhandlungen
    Language: German
    Branch Library: GFZ Library
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  • 2
    Monograph available for loan
    Monograph available for loan
    Chichester : Wiley
    Call number: PIK B 020-16-89479
    Type of Medium: Monograph available for loan
    Pages: VII, 246 S. , graph. Darst.
    ISBN: 9781118456071
    Language: English
    Note: Why agent-based modelling is useful for economists -- Starting agent-based modelling -- Heterogeneous demand -- Social demand -- Benefits of barter -- The market -- Labour market -- International trade -- Banking -- The tragedy of the commons.
    Location: A 18 - must be ordered
    Branch Library: PIK Library
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  • 3
    Monograph available for loan
    Monograph available for loan
    Stuttgart : Krämer Verlag
    Call number: PIK K 130-16-89631
    Type of Medium: Monograph available for loan
    Pages: 136 Seiten , 17 Illustrationen , 20 cm x 16 cm
    ISBN: 378281147X , 9783782811477
    Language: German
    Branch Library: PIK Library
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  • 4
    Call number: IASS 16.90069
    Type of Medium: Monograph available for loan
    Pages: XV, 211 S.
    ISBN: 9781138841178 (hb)
    Series Statement: Earthscan science in society
    Language: English
    Branch Library: RIFS Library
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  • 5
    Call number: AWI A11-16-90009
    In: Forschungsbericht / Deutsches Zentrum für Luft- und Raumfahrt ; 2016-01, 2016-01
    Description / Table of Contents: Recent climate model simulations indicated that sulfate (SO4) formed from ship emissions may be one of the major contributors to the negative anthropogenic aerosol radiative forcing. Due to increasingly stringent regulations on the maximum sulfur content of ship fuels this contribution is expected to decrease strongly in the future. Possibly, nitrate (NO3) formation will compensate for part of the reduction, but measurements indicate that it may be crucial to include coarse mode particle interactions with condensable trace gases in order to quantify this effect. However, none of the aerosol (sub)models previously used for such assessments accounted for the coarse mode particle effects. This provided the motivation to extend one of those submodels, namely MADE, in the present work. The new submodel, MADE3, is based on the second generation of MADE, called MADE-in. It includes nine lognormal modes to represent three size ranges with three types of aerosol particles each. The associated increase in complexity w.r.t. to MADE and MADE-in required a complete revision of the code and careful reexamination of the underlying physical assumptions, as only the fine modes had been considered in the gas–particle interactions in the predecessor submodels. The main new features of MADE3 are the ability of coarse mode particles to take up condensing vapors and to coagulate with fine mode particles, and the gas–particle partitioning of chlorine, which is mainly contained in sea spray (SS) particles. In order to test the algorithms used in the new submodel it was run in a box model setup and the results were compared to those obtained in an analogous setup with the much more detailed, particle-resolved aerosol model PartMC-MOSAIC. The comparison was performed for an idealized marine boundary layer test case and showed improved performance of MADE3 over MADE in the representation of coarse mode particles and total aerosol composition. Subsequently, MADE3 was implemented into the atmospheric chemistry general circulation model EMAC. Due to the new mode structure this required extensive adaptations to other submodels, specifically to the one used for cloud and precipitation processing of aerosol particles. EMAC does not track interstitial aerosol particles separately from those immersed in cloud droplets, ice crystals, or precipitation. Hence, a sophisticated scheme was devised and implemented for the assignment of the in-cloud or in-precipitation aerosol to one of four possible modes, instead of just one possible mode in the MADE case. The coupled model, EMAC with MADE3, was thoroughly evaluated by comparison of simulation output to station network measurements of near-surface aerosol component mass concentrations, to airborne measurements of vertical aerosol mass mixing ratio and number concentration profiles, to ground-based and airborne measurements of particle size distributions, and to station network and satellite measurements of aerosol optical depth. Satisfactory agreement with the observations was obtained and it was thus shown that MADE3 is ready for application within EMAC. The results from an identically designed simulation with the predecessor submodel MADE led to the conclusion that a fraction of the secondary aerosol species partitions to the coarse modes in MADE3 and is thus removed more quickly from the atmosphere. Furthermore, a new evaluation method was developed, which allows for comparison of model output to size-resolved electron microscopy measurements of particle composition. Both submodels, MADE3 and MADE, were finally used in EMAC simulations of the effect of ship emissions on the atmospheric aerosol. As in previous studies for year 2000 conditions, SO4 was found to be the dominant species in the fine modes in this context. In contrast to SO4, the major fraction of ship emissions-induced near-surface NO3 was found to partition to the coarse modes in the MADE3 simulations. A similar amount of fine mode NO3 as in the present and former MADE simulations was also formed. Hence, fine mode particle growth due to ship emissions was also similar, and was reduced in idealized simulations of a future low-sulfur fuel scenario. Particle volume concentration decreased by about 1 % due to ship emissions in the MADE3 simulations, but not in the MADE simulations. This finding was independent of the fuel sulfur content. In summary, the inclusion of coarse mode particle interactions and the gas–particle partitioning of chlorine could alter prior conclusions on the climate effect of ship emissions-induced aerosol perturbations, mainly due to the differences in NO3 formation. This climate effect will be re-quantified in a follow-up study by coupling the MADE3 aerosol to a two-moment cloud microphysics scheme. Further planned applications of the new submodel include the quantification of climate effects of aerosol perturbations via their influence on ice clouds as well as simulations with boundary conditions specific to measurement campaigns. Results from the latter may lead to further model improvements and can also provide guidance for the interpretation of measurement results.
    Type of Medium: Dissertations
    Pages: xiv, 170 Seiten , 42 Illustrationen und Diagramme
    Edition: Als Manuskript gedruckt
    Series Statement: Forschungsbericht / DLR, Deutsches Zentrum für Luft- und Raumfahrt 2016-01
    Language: English
    Note: Contents: Abstract. - Kurzfassung. - 1 Introduction. - 1.1 Motivation. - 1.2 Scientific questions. - 1.3 Method. - 2 Background and state of the science. - 2.1 The atmospheric aerosol. - 2.1.1 Relevance. - 2.1.2 Aerosol processes. - 2.1.3 Aerosol properties. - 2.2 The influence of ship emissions. - 2.3 Aerosol modeling. - 2.3.1 Selected results. - 2.3.2 Motivation to expand on previous work. - 2.3.3 The computational approach. - 2.3.4 Existing aerosol microphysics submodels. - 2.3.5 MADE3 as a successor of MADE and MADE-in. - 3 The aerosol submodel MADE3. - 3.1 Aerosol characteristics. - 3.1.1 Modes. - 3.1.2 Species. - 3.1.3 Mathematical representation of aerosol characteristics. - 3.2 Aerosol processes. - 3.2.1 Gas–particle partitioning. - 3.2.2 Condensation of H2SO4 and organic vapors. - 3.2.3 New particle formation. - 3.2.4 Coagulation. - 3.2.5 Renaming. - 3.2.6 Aging of insoluble particles. - 4 Box model tests. - 4.1 Model description: MADE vs. MADE3. - 4.2 Model description: PartMC-MOSAIC. - 4.3 Test case scenario. - 4.4 Results: MADE3 vs. MADE. - 4.4.1 Size distributions. - 4.4.2 Composition. - 4.5 Results: MADE3 vs. PartMC-MOSAIC. - 4.5.1 Size distributions. - 4.5.2 Composition. - 4.6 Summary and conclusions. - 5 MADE3 in the atmospheric chemistry general circulation model EMAC. - 5.1 Basic settings. - 5.2 Emissions. - 5.3 Transport. - 5.4 Gas phase chemistry. - 5.5 Cloud formation. - 5.5.1 Stratiform clouds. - 5.5.2 Convective clouds. - 5.6 Cloud and precipitation processing of the aerosol. - 5.7 Wet deposition. - 5.8 Dry deposition. - 5.9 Sedimentation. - 5.10 Optical properties. - 6 Evaluation of simulated tropospheric aerosol properties. - 6.1 Data comparability. - 6.2 The MADE3 aerosol within EMAC. - 6.2.1 Near-surface mass concentrations. - 6.2.2 Vertical distributions. - 6.2.3 Size distributions. - 6.2.4 Aerosol optical depth. - 6.2.5 Global tropospheric burdens and residence times. - 6.2.6 Summary and conclusions. - 6.3 Comparison to MADE. - 6.4 New features of MADE3. - 7 Effects of oceanic ship emissions on atmospheric aerosol particles. - 7.1 Effects of year 2000 emissions. - 7.1.1 Near-surface concentrations. - 7.1.2 Near-surface size distributions. - 7.1.3 Tropospheric burdens. - 7.2 Effects of an idealized fuel sulfur content reduction. - 7.3 Summary and conclusions. - 8 Summary, conclusions, and outlook. - Appendix. - A.1 Particle evolution in the box model study. - A.2 Gas phase chemical mechanism. - A.3 Liquid phase chemical mechanism. - A.4 Mode assignment of cloud residual aerosol. - A.4.1 Terminology. - A.4.2 Basic assumptions. - A.4.3 Algorithm for residual assignment. - A.5 Year 2000 aerosol in EMAC with MADE3. - A.6 Near-surface mass concentration evaluation. - References. - Acronyms, symbols, and species names. - Acronyms. - Symbols. - Tracers and chemical species. - Danksagung.
    Location: AWI Reading room
    Branch Library: AWI Library
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  • 6
    Monograph available for loan
    Monograph available for loan
    Berlin : Wissenschaftlicher Beirat d. Bundesregierung Globale Umweltveränderungen
    Call number: IASS 16.90038 ; PIK D 024-16-90038 ; IASS 17.90038
    Type of Medium: Monograph available for loan
    Pages: XXXI, 544 Seiten , 115 Illustrationen , 27.5 cm x 19.5 cm, 1227 g
    Edition: 1. Auflage
    ISBN: 3936191441 , 9783936191448
    Classification:
    Geography and Geomorphology
    Language: German
    Location: A 18 - must be ordered
    Branch Library: RIFS Library
    Branch Library: PIK Library
    Branch Library: RIFS Library
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  • 7
    Monograph available for loan
    Monograph available for loan
    Wiesbaden : Springer Vieweg
    Call number: PIK P 113-16-89634
    Description / Table of Contents: Die Autoren dieses Buches diskutieren die ursprünglichen Ziele der Energiewende unter den derzeitigen Prämissen interdisziplinär. Sowohl technische Aspekte der elektrischen Energieversorgung und der Stromerzeugung aus fluktuierenden Quellen als auch gesellschaftliche Herausforderungen und ethische Fragen sind in den Beiträgen behandelt. Die Texte wollen helfen, im Spannungsfeld einer nachhaltigen Energieversorgung Perspektiven aufzuzeigen und in ein eigenes Ordnungssystem zu bringen. Die Konzeption geht auf den Workshop „Energiewende: Quo vadis?“ der Akademie der Wissenschaften in Hamburg zurück. Aus dem Inhalt Technische Optionen der Energieversorgung Elektrische Energieversorgung Wird konventionelle Energieerzeugung im nachhaltigen Energiekonzept noch benötigt? Stromerzeugung aus Wind und Sonne - Erzeugungscharakteristik und Aspekte einer Integration ins Versorgungssystem Gesellschaftliche Herausforderungen der Energieversorgung Ethische Fragen der Energieerzeugung Die deutsche Energiepolitik aus ökonomischer Perspektive Rechtliche Rahmenbestimmungen Die Zielgruppe Wissenschaftler und Dozenten in den Gebieten Technik und Gesellschaft Berater und Entscheider in Unternehmen, Genossenschaften und Politik Der Herausgeber Herr Univ.-Prof. Dr.-Ing. Franz Joos leitet das Fachgebiet Energietechnik an der H elmut-Schmidt-Universität in Hamburg und ist als Ordentliches Mitglied Sprecher der Arbeitsgruppe „Energie und Ressourcen“ der Akademie der Wissenschaften in Hamburg
    Type of Medium: Monograph available for loan
    Pages: IX, 140 S. , Ill., graph. Darst.
    ISBN: 9783658117986
    Language: German
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  • 8
    Call number: IASS 16.90121
    Type of Medium: Monograph available for loan
    Pages: xviii, 862 Seiten, 24 ungezählte Seiten , Illustrationen
    ISBN: 9780713999624 ((hbk.) £30.00) , 9780241198407 (electr.; epdf)
    Language: English
    Branch Library: RIFS Library
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  • 9
    Call number: IASS 16.90051
    Type of Medium: Monograph available for loan
    Pages: XII, 106 Seiten , Diagramme , 24 cm x 16.8 cm
    ISBN: 3658127295 , 9783658127299 , 9783658127305 (electronic)
    Language: German
    Branch Library: RIFS Library
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  • 10
    Call number: S 98.0095(2016, 1)
    Type of Medium: Series available for loan
    Pages: VII, 82 Seiten , Illustrationen, Diagramme
    ISBN: 9783941721647
    Series Statement: Tagungsbericht / DGMK, Deutsche Wissenschaftliche Gesellschaft für Erdöl, Erdgas und Kohle 2016-1
    Language: German
    Note: Erscheint zusammen mit "Beiträge der DGMK/ÖGEW-Frühjahrstagung des Fachbereiches "Aufsuchung und Gewinnung" am 21. und 22. April 2016 in Celle" auf USB-Stick, enthält nur "Verzeichnis der Vorträge und Poster" der Tagung
    Location: Lower compact magazine
    Branch Library: GFZ Library
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