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  • 1
    Monograph available for loan
    Monograph available for loan
    Chichester [u.a.] : Wiley
    Call number: M 01.0426
    Type of Medium: Monograph available for loan
    Pages: xi, 231 S.
    ISBN: 0471985708
    Classification:
    Historical Geology
    Location: Upper compact magazine
    Branch Library: GFZ Library
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  • 2
    Monograph available for loan
    Monograph available for loan
    Cambridge, USA : Wiley
    Call number: AWI G5-01-0098 ; AWI G7-02-0018
    Type of Medium: Monograph available for loan
    Pages: XI, 231 S. : Abb. ; 24 cm
    ISBN: 0471985694
    Branch Library: AWI Library
    Branch Library: AWI Library
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  • 3
    Call number: IASS 19.91963
    Description / Table of Contents: Introduction : locating the polar regions / Mark Nuttall, Torben R. Christensen and Martin J. Siegert -- Exploring and mapping the Arctic : histories of discovery and knowledge / John McCannon -- Exploring and mapping the Antarctic : histories of discovery and knowledge / Ursula Rack -- The Arctic in literature and the popular imagination / Heidi Hansson -- The Antarctic in literature and the popular imagination / Elizabeth Leane -- Self-determination and indigenous governance in the Arctic / Mark Nuttall -- Indigenous cartographies of Arctic spaces and places / Kaitlin Young -- Circumpolar health and well-being / Helle Møller -- Education in the Arctic : trends, challenges and possibilities / Andrew Hodgkins -- Historical sites and heritage in the polar regions / Dag Avango -- Biodiversity in the polar regions in a warming world / Hans Meltofte -- The geological histories of polar environments / Tom Jordan -- Polar oceans and their global significance / Rory Bingham -- Polar sea ice as a barometer and driver of change / Jeremy Wilkinson and Julienne Stroeve -- The current health of polar ice sheets and implications for sea level / Mal McMillan -- Polar climatology and evidence for global warming / Gareth Marshall -- Post last glacial maximum processes in the polar regions / Pippa Whitehouse -- Biogeochemical cycling in glacial environments / Elizabeth A. Bagshaw -- Permafrost dynamics / Margareta Johansson -- Polar feedbacks in a changing climate / Richard Hodgkins -- The Antarctic Treaty, territorial claims and a continent for science / Klaus Dodds -- The polar regions and the law of the sea / Donald R. Rothwell -- The Arctic Council : governance and international relations / Timo Koivurova -- National Antarctic programmes : the politics-science interface / Anita Dey Nuttall -- Sustainable development and sustainability in Arctic political discourses / Birger Poppel -- Indigeneity, sovereignty and Arctic indigenous internationalism / Jessica Shadian -- Geopolitics and security in the Arctic / Andreas Østhagen -- Polar tourism : status, trends, futures / Emma J. Stewart and Daniela Liggett -- Consulting Arctic energy : from political hearings to roundtable events / Arthur Mason -- Social and environmental impact assessments in the Arctic / Anne Merrild Hansen, Sanne Vamme Larsen and Bram Noble -- Northern fisheries / Alf Håkon Hoel -- The future of Antarctica : minerals, bioprospecting and fisheries / Sanjay Chaturvedi -- Conservation and environmental governance in the polar regions / Mark Nuttall -- Polar technology and scientific discovery : exploring the great ice sheets through geophysics / Martin J. Siegert -- Looking into the past : ice and sediment cores / Robert McKay -- Subglacial access and investigation / Keith Makinson -- Upper atmosphere physics and chemistry / Sheila Kirkwood -- Ocean-land interactions and the Arctic carbon cycle / Frans-Jan Parmentier -- Back to the future : detecting past Arctic change and investing in future observations / Terry V. Callaghan, Margareta Johansson and Nadya Matveyeva
    Type of Medium: Monograph available for loan
    Pages: xxiii, 530 Seiten , Illustrationen, Diagramme, Karten
    ISBN: 9781138843998 , 9781315730639
    Series Statement: Routledge international handbooks
    Language: English
    Branch Library: RIFS Library
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  • 4
    Call number: 9780128191101 (e-book)
    Type of Medium: 12
    Pages: 1 Online-Ressource (806 Seiten)
    Edition: 2nd edition
    ISBN: 9780128191101
    Language: English
    Note: Contents List of contributors Preface 1 Antarctic Climate Evolution - second edition 1.1 Introduction 1.2 Structure and content of the book Acknowledgements References 2 Sixty years of coordination and support for Antarctic science - the role of SCAR 2.1 Introduction 2.2 Scientific value of research in Antarctica and the Southern Ocean 2.3 The international framework in which SCAR operates 2.4 The organisation of SCAR 2.5 Sixty years of significant Antarctic science discoveries 2.6 Scientific Horizon Scan 2.7 Summary References Appendix 3 Cenozoic history of Antarctic glaciation and climate from onshore and offshore studies 3.1 Introduction 3.2 Long-term tectonic drivers and ice sheet evolution 3.3 Global climate variability and direct evidence for Antarctic ice sheet variability in the Cenozoic 3.3.1 Late Cretaceous to early Oligocene evidence of Antarctic ice sheets and climate variability 3.3.2 The Eocene-Oligocene transition and continental-scale glaciation of Antarctica 3.3.3 Transient glaciations of the Oligocene and Miocene 3.3.4 Pliocene to Pleistocene 3.4 Regional seismic stratigraphies and drill core correlations, and future priorities to reconstruct Antarctica's Cenozoic 3.4.1 Ross Sea 3.4.2 Amundsen Sea 3.4.3 Bellingshausen Sea and Pacific coastline of Antarctic Peninsula 3.4.4 The Northern Antarctic Peninsula and South Shetland Islands 3.4.5 The Eastern Margin of the Antarctic Peninsula 3.4.6 The South Orkney Microcontinent and adjacent deep-water basins 3.4.7 East Antarctic Margin 3.4.7.1 Weddell Sea 3.4.7.1.1 Gondwana break-up, Weddell Sea opening and pre-ice-sheet depositional environment 3.4.7.1.2 The Eocene-Oligocene transition and paleoenvironment during increasing glacial conditions 3.4.7.1.3 Recent geophysical survey beneath the Ekström Ice Shelf and future directions for drilling 3.4.7.2 Prydz Bay 3.4.7.2.1 Early Cenozoic greenhouse and earliest glacial phase in late Eocene 3.4.7.2.2 Oligocene-Miocene ice-sheet development 3.4.7.2.3 The Polar Ice Sheet (late Miocene(?)-Pleistocene) 3.4.7.3 East Antarctic Margin - Sabrina Coast 3.4.7.4 Wilkes Land margin and Georges V Land 3.5 Summary, future directions and challenges Acknowledgements References 4 Water masses, circulation and change in the modern Southern Ocean 4.1 Introduction 4.1.1 Defining the Southern Ocean 4.2 Water masses - characteristics and distribution 4.2.1 Upper ocean 4.2.2 Intermediate depth waters 4.2.3 Deep water 4.2.4 Bottom water 4.3 Southern Ocean circulation 4.3.1 Antarctic Circumpolar Current (ACC) 4.3.2 Southern Ocean meridional overturning circulation (SOMOC) 4.3.3 Deep western boundary currents 4.3.3.1 Pacific deep western boundary current 4.3.3.2 Indian deep western boundary currents 4.3.3.3 Atlantic deep western boundary current 4.3.4 Subpolar circulation - gyres, slope and coastal currents 4.3.4.1 Gyres 4.3.4.2 Antarctic slope and coastal currents 4.4 Modern Southern Ocean change 4.4.1 Climate change 4.4.2 Ocean change 4.4.3 Change in dynamics and circulation 4.5 Concluding remarks References 5 Advances in numerical modelling of the Antarctic ice sheet 5.1 Introduction and aims 5.2 Advances in ice sheet modelling 5.2.1 Grounding line physics 5.2.2 Adaptive grids 5.2.3 Parallel ice sheet model - PISM 5.2.4 Coupled models 5.3 Model input - bed data 5.4 Advances in knowledge of bed processes 5.5 Model intercomparison 5.6 Brief case studies 5.7 Future work References 6 The Antarctic Continent in Gondwana: a perspective from the Ross Embayment and Potential Research Targets for Future Investigations 6.1 Introduction 6.2 The Antarctic plate and the present-day geological setting of the Ross Embayment 6.3 East Antarctica 6.3.1 The Main Geological Units during the Paleoproterozoic-Early Neoproterozoic Rodinia Assemblage 6.3.2 From Rodinia breakup to Gondwana (c. 800-650 Ma) 6.3.3 The 'Ross Orogen' in the Transantarctic Mountains during the late Precambrian-early Paleozoic evolution of the paleo-Pacific margin of Gondwana (c. 600-450 Ma) 6.4 West Antarctic Accretionary System 6.4.1 West Antarctica in the Precambrian to Mesozoic (c. 180 Ma) evolution of Gondwana until the middle Jurassic breakup 6.4.1.1 Precambrian to Cambrian metamorphic basement 6.4.1.2 Devono-Carboniferous arc magmatism ('Borchgrevink Event') (c. 370-350 Ma) 6.4.1.3 Beacon Supergroup (Devonian-Permo-Triassic-earliest Jurassic) 6.4.1.4 The Ellsworth-Whitmore Mountains Terrane and the Permo-Triassic arc magmatism 6.4.1.5 Ferrar Supergroup and the Gondwana breakup (c. 180Ma) 6.4.1.6 The Antarctic Andean Orogen 6.5 Mesozoic to Cenozoic Tectonic Evolution of the Transantarctic Mountains 6.6 Tectonic evolution in the Ross Sea Sector during the Cenozoic 6.7 Concluding remarks, open problems and potential research themes for future geoscience investigations in Antarctica 6.7.1 Persistent challenges for onshore geoscience investigations 6.7.2 Antarctica and the Ross Orogen in the Transantarctic Mountains 6.7.3 Antarctica after Gondwana fragmentation Acknowledgements References 7 The Eocene-Oligocene boundary climate transition: an Antarctic perspective 7.1 Introduction 7.2 Background 7.2.1 Plate tectonic setting 7.2.2 Antarctic paleotopography 7.2.3 Paleoceanographic setting 7.2.4 Global average and regional sea level response 7.2.5 Proxies to reconstruct past Antarctic climatic and environmental evolution 7.2.6 Far-field proxies 7.3 Antarctic Sedimentary Archives 7.3.1 Land-based outcrops 7.3.1.1 Antarctic Peninsula Region 7.3.1.2 King George (25 de Mayo) Island, South Shetland Islands 7.3.1.3 The Ross Sea Region 7.3.2 Sedimentary archives from drilling on the Antarctic Margin 7.3.2.1 Drill cores in the western Ross Sea 7.3.2.2 The Prydz Bay Region 7.3.2.3 Weddell Sea 7.3.2.4 Wilkes Land 7.4 Summary of climate signals from Antarctic sedimentary archives 7.4.1 Longer-term changes 7.4.2 The climate of the Eocene-Oligocene transition 7.5 The global context of Earth and climate system changes across the EOT 7.5.1 Climate modelling 7.5.2 Relative sea-level change around Antarctica 7.6 Summary 7.6.1 Early-middle Eocene polar warmth 7.6.2 Late Eocene cooling 7.6.3 Eocene-Oligocene transition Acknowledgements References 8 Antarctic Ice Sheet dynamics during the Late Oligocene and Early Miocene: climatic conundrums revisited 8.1 Introduction 8.2 Oligocene-Miocene Transition in Antarctic geological records and its climatic significance 8.3 Conundrums revisited 8.3.1 What caused major transient glaciation of Antarctica across the OMT? 8.3.2 Apparent decoupling of Late Oligocene climate and ice volume? 8.4 Concluding remarks Acknowledgements References 9 Antarctic environmental change and ice sheet evolution through the Miocene to Pliocene - a perspective from the Ross Sea and George V to Wilkes Land Coasts 9.1 Introduction 9.1.1 Overview and relevance 9.1.2 Far-field records of climate and ice sheet variability 9.1.2.1 The Early Miocene 9.1.2.2 The mid-Miocene 9.1.2.3 The Late Miocene 9.1.2.4 The Pliocene 9.1.3 Southern Ocean Paleogeography and Paleoceanography 9.1.4 Land elevation change and influences on Antarctic Ice Sheet evolution 9.2 Records of Miocene to Pliocene climate and ice sheet variability from the Antarctic margin 9.2.1 Introduction to stratigraphic records 9.2.2 George V Land to Wilkes Land Margin 9.2.2.1 Geological setting 9.2.2.2 Oceanography of the Adelie coast 9.2.2.3 Seismic stratigraphy off the George V Land to Wilkes Land Margin 9.2.2.4 Drill core records from the George V Land to Wilkes Land Margin 9.2.2.5 Neogene history of the George V Land to Wilkes Land margin 9.2.3 The Ross Sea Embayment and Southern Victoria Land 9.2.3.1 Geological setting 9.2.3.2 Oceanography and climate in the Ross Sea Region 9.2.3.3 Seismic stratigraphic records in the Ross Sea 9.2.3.4 Stratigraphic records from drill cores in the Ross Sea 9.2.3.5 Terrestrial records from Southern Victoria Land 9.2.3.6 Neogene history in the Ross Sea Region 9.3 Numerical modelling 9.3.1 Miocene
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  • 5
    Call number: 9/M 07.0421(461)
    In: Geological Society Special Publication
    Type of Medium: Monograph available for loan
    Pages: 255 Seiten , Illustrationen
    ISBN: 9781786203229
    Series Statement: Geological Society Special Publication 461
    Classification:
    Historical Geology
    Language: English
    Location: Reading room
    Branch Library: GFZ Library
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  • 6
    Keywords: Antarctica ; glaciology ; subglacial Antarctica ; subglacial mountains ; subglacial lakes ; subglacial volcanoes ; glacier mass loss
    Description / Table of Contents: Exploration of subsurface Antarctica: uncovering past changes and modern processes / Martin J. Siegert, Stewart S. R. Jamieson and Duanne White / Geological Society, London, Special Publications, 461, 1-6, 25 September 2017, https://doi.org/10.1144/SP461.15 --- A 60-year international history of Antarctic subglacial lake exploration / Martin J. Siegert / Geological Society, London, Special Publications, 461, 7-21, 25 May 2017, https://doi.org/10.1144/SP461.5 --- Exploring the Recovery Lakes region and interior Dronning Maud Land, East Antarctica, with airborne gravity, magnetic and radar measurements / Rene Forsberg, Arne V. Olesen, Fausto Ferraccioli, Tom A. Jordan, Kenichi Matsuoka, Andres Zakrajsek, Marta Ghidella and Jamin S. Greenbaum / Geological Society, London, Special Publications, 461, 23-34, 20 September 2017, https://doi.org/10.1144/SP461.17 --- Ice-flow reorganization within the East Antarctic Ice Sheet deep interior / L. H. Beem, M. G. P. Cavitte, D. D. Blankenship, S. P. Carter, D. A. Young, G. R. Muldoon, C. S. Jackson and M. J. Siegert / Geological Society, London, Special Publications, 461, 35-47, 11 August 2017, https://doi.org/10.1144/SP461.14 --- Was South Georgia covered by an ice cap during the Last Glacial Maximum? / Duanne A. White, Ole Bennike, Martin Melles, Sonja Berg and Steven A. Binnie / Geological Society, London, Special Publications, 461, 49-59, 13 June 2017, https://doi.org/10.1144/SP461.4 --- The Gebra–Magia Complex: mass-transport processes reworking trough-mouth fans in the Central Bransfield Basin (Antarctica) / D. Casas, M. García, F. Bohoyo, A. Maldonado and G. Ercilla / Geological Society, London, Special Publications, 461, 61-75, 16 June 2017, https://doi.org/10.1144/SP461.10 --- Bathymetry of Schirmacher lakes as a tool for geomorphological evolution studies / Ashit Kumar Swain / Geological Society, London, Special Publications, 461, 77-93, 11 July 2017, https://doi.org/10.1144/SP461.13 --- Heavy mineral assemblage of marine sediments as an indicator of provenance and east antarctic ice sheet fluctuations / Mayuri Pandey, Naresh C. Pant, Paromita Biswas, Prakash K. Shrivastava, Sonalika Joshi and Neety Nagi / Geological Society, London, Special Publications, 461, 95-111, 22 June 2017, https://doi.org/10.1144/SP461.2 --- Position and variability of complex structures in the central East Antarctic Ice Sheet / Thilo Wrona, Michael J. Wolovick, Fausto Ferraccioli, Hugh Corr, Tom Jordan and Martin J. Siegert / Geological Society, London, Special Publications, 461, 113-129, 15 June 2017, https://doi.org/10.1144/SP461.12 --- Summit of the East Antarctic Ice Sheet underlain by thick ice-crystal fabric layers linked to glacial–interglacial environmental change / Bangbing Wang, Bo Sun, Carlos Martin, Fausto Ferraccioli, Daniel Steinhage, Xiangbin Cui and Martin J. Siegert / Geological Society, London, Special Publications, 461, 131-143, 26 May 2017, https://doi.org/10.1144/SP461.1 --- Drilling project at Gamburtsev Subglacial Mountains, East Antarctica: recent progress and plans for the future / Pavel Talalay, Youhong Sun, Yue Zhao, Yuansheng Li, Pinlu Cao, Alexey Markov, Huiwen Xu, Rusheng Wang, Nan Zhang, Xiaopeng Fan, Yang Yang, Mikhail Sysoev, Yongwen Liu and Yunchen Liu / Geological Society, London, Special Publications, 461, 145-159, 24 May 2017, https://doi.org/10.1144/SP461.9 --- A deep subglacial embayment adjacent to the grounding line of Institute Ice Stream, West Antarctica / Hafeez Jeofry, Neil Ross, Hugh F. J. Corr, Jilu Li, Prasad Gogineni and Martin J. Siegert / Geological Society, London, Special Publications, 461, 161-173, 13 June 2017, https://doi.org/10.1144/SP461.11 --- Ocean forced variability of Totten Glacier mass loss / Jason Roberts, Benjamin K. Galton-Fenzi, Fernando S. Paolo, Claire Donnelly, David E. Gwyther, Laurie Padman, Duncan Young, Roland Warner, Jamin Greenbaum, Helen A. Fricker, Antony J. Payne, Stephen Cornford, Anne Le Brocq, Tas van Ommen, Don Blankenship and Martin J. Siegert / Geological Society, London, Special Publications, 461, 175-186, 23 August 2017, https://doi.org/10.1144/SP461.6 --- Chemical characteristics of the ice cores obtained after the first unsealing of subglacial Lake Vostok / Irina Alekhina, Alexey Ekaykin, Alexey Moskvin and Vladimir Lipenkov / Geological Society, London, Special Publications, 461, 187-196, 24 May 2017, https://doi.org/10.1144/SP461.3 --- Antarctic subglacial groundwater: a concept paper on its measurement and potential influence on ice flow / Martin J. Siegert, Bernd Kulessa, Marion Bougamont, Poul Christoffersen, Kerry Key, Kristoffer R. Andersen, Adam D. Booth and Andrew M. Smith / Geological Society, London, Special Publications, 461, 197-213, 25 May 2017, https://doi.org/10.1144/SP461.8 --- Modern to Glacial age subglacial meltwater drainage at Law Dome, coastal East Antarctica from topography, sediments and jökulhlaup observations / Ian D. Goodwin, Jason L. Roberts, David M. Etheridge, John Hellstrom, Andrew D. Moy, Marta Ribo and Andrew M. Smith / Geological Society, London, Special Publications, 461, 215-230, 12 July 2017, https://doi.org/10.1144/SP461.16 --- A new volcanic province: an inventory of subglacial volcanoes in West Antarctica / Maximillian van Wyk de Vries, Robert G. Bingham and Andrew S. Hein / Geological Society, London, Special Publications, 461, 231-248, 29 May 2017, https://doi.org/10.1144/SP461.7
    Pages: Online-Ressource (VI, 255 Seiten) , Diagramme, Karten
    ISBN: 9781786203229
    Language: English
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  • 7
    ISSN: 1751-8369
    Source: Blackwell Publishing Journal Backfiles 1879-2005
    Topics: Geography , Geosciences
    Notes: The existence of a large subglacial lake beneath the antarctic Ice Sheet at Terre Adélie indicates the presence of basal ice at its pressure-melting temperature. A numerical model of the ice-sheet thermal regime is employed using the balance velocity of the ice sheet as an initial model input in order to calculate ice-sheet basal temperatures. However, the results from this model show the Terre Adélie area to be characterised by basal freezing. Heat in addition to that accounted for in the model is thus required at the ice-sheet base in order for pressure melting temperatures to be attained. The sources for such heat are (1) an enhanced geothermal heat flux and (2) an increase in frictional heating caused by the flow of ice. In this paper the latter possibility is expanded by hypothesising that subglacial topography induces convergent ice flow around Terre Adélie, causing enhanced basal ice velocities. Model experiments indicate that an increase in ice velocity (from 7 to at least 42 m yr−1) is required to raise the temperature of the basal ice to the pressure melting value. Increased ice velocity, and consequent frictional heat production due to convergent ice flow, may therefore be important in explaining the location of the subglacial lake in this region. These results allow the process of convergent ice flow within a contemporary ice sheet to be quantified. A verification (or otherwise) of the model results may be possible if ice surface velocity measurements from modem GPS methods are made.
    Type of Medium: Electronic Resource
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  • 8
    Electronic Resource
    Electronic Resource
    [s.l.] : Nature Publishing Group
    Nature 440 (2006), S. 1033-1036 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] The existence of many subglacial lakes provides clear evidence for the widespread presence of water beneath the East Antarctic ice sheet, but the hydrology beneath this ice mass is poorly understood. Such knowledge is critical to understanding ice flow, basal water transfer to the ice margin, ...
    Type of Medium: Electronic Resource
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  • 9
    Electronic Resource
    Electronic Resource
    [s.l.] : Macmillian Magazines Ltd.
    Nature 403 (2000), S. 643-646 
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] It has now been known for several years that a 200-km-long lake, called Lake Vostok, lies beneath the ice sheet on which sits Vostok Station in Antarctica. The conditions at the base of the ice sheet above this subglacial lake can provide information about the environment within the lake, ...
    Type of Medium: Electronic Resource
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  • 10
    ISSN: 1476-4687
    Source: Nature Archives 1869 - 2009
    Topics: Biology , Chemistry and Pharmacology , Medicine , Natural Sciences in General , Physics
    Notes: [Auszug] Over 70 lakes have now been identified beneath the Antarctic ice sheet. Although water from none of the lakes has been sampled directly, analysis of lake ice frozen (accreted) to the underside of the ice sheet above Lake Vostok, the largest of these lakes, has allowed inferences to be made on lake ...
    Type of Medium: Electronic Resource
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