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  • Books  (40)
  • London : The Geological Society  (21)
  • Berlin [u.a.] : Springer  (14)
  • Dordrecht [u.a.] : Kluwer  (5)
  • 1995-1999  (28)
  • 1990-1994  (12)
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  • Books  (40)
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  • 1
    Keywords: Malm ; Zentrale Nordsee ; Geology ; Hydrocarbons ; North Sea
    Description / Table of Contents: J. J. Veldkamp, M. G. Gaillard, H. A. Jonkers, B. K. Levell, M. G. Gaillard, and H. A. Jonkers: A Kimmeridgian time-slice through the Humber Group of the central North Sea: a test of sequence stratigraphic methods / Geological Society, London, Special Publications, 114:1-28, doi:10.1144/GSL.SP.1996.114.01.01 --- Alan Carruthers, Tom Mckie, John Price, Robin Dyer, Gwydion Williams, and Paul Watson: The application of sequence stratigraphy to the understanding of Late Jurassic turbidite plays in the Central North Sea, UKCS / Geological Society, London, Special Publications, 114:29-45, doi:10.1144/GSL.SP.1996.114.01.02 --- M. J. David: History of hydrocarbon exploration in the Moray Firth / Geological Society, London, Special Publications, 114:47-80, doi:10.1144/GSL.SP.1996.114.01.03 --- Richard J. Davies, Kevin J. Stephen, John R. Underhill, Richard J. Davies, and Kevin J. Stephen: A re-evaluation of Middle and Upper Jurassic stratigraphy and the flooding history of the Moray Firth Rift System, North Sea / Geological Society, London, Special Publications, 114:81-108, doi:10.1144/GSL.SP.1996.114.01.04 --- S. D. Harker and M. Rieuf: Genetic stratigraphy and sandstone distribution of the Moray Firth Humber Group (Upper Jurassic) / Geological Society, London, Special Publications, 114:109-130, doi:10.1144/GSL.SP.1996.114.01.05 --- Claire R. Hallsworth, Andrew C. Morton, and Graham Dore: Contrasting mineralogy of Upper Jurassic sandstones in the Outer Moray Firth, North Sea: implications for the evolution of sediment dispersal patterns / Geological Society, London, Special Publications, 114:131-144, doi:10.1144/GSL.SP.1996.114.01.06 --- R. E. Frost and J. F. Rose: Tectonic quiescence punctuated by strike-slip movement: influences on Late Jurassic sedimentation in the Moray Firth and the North Sea region / Geological Society, London, Special Publications, 114:145-162, doi:10.1144/GSL.SP.1996.114.01.07 --- M. A. Martin, J. E. Pollard, and M. A. Martin: The role of trace fossil (ichnofabric) analysis in the development of depositional models for the Upper Jurassic Fulmar Formation of the Kittiwake Field (Quadrant 21 UKCS) / Geological Society, London, Special Publications, 114:163-183, doi:10.1144/GSL.SP.1996.114.01.08 --- Stuart Gowland: Facies characteristics and depositional models of highly bioturbated shallow marine siliciclastic strata: an example from the Fulmar Formation (Late Jurassic), UK Central Graben / Geological Society, London, Special Publications, 114:185-214, doi:10.1144/GSL.SP.1996.114.01.09 --- S. J. C. Cannon and S. Gowland: Facies controls on reservoir quality in the Late Jurassic Fulmar Formation, Quadrant 21, UKCS / Geological Society, London, Special Publications, 114:215-233, doi:10.1144/GSL.SP.1996.114.01.10 --- Geoff Freer, Andrew Hurst, and Paul Middleton: Upper Jurassic sandstone reservoir quality and distribution on the Fladen Ground Spur / Geological Society, London, Special Publications, 114:235-249, doi:10.1144/GSL.SP.1996.114.01.11 --- C. Y. McCants and S. D. Burley: Reservoir architecture and diagenesis in downthrown fault block plays: the Lowlander Prospect of Block 14/20b, Witch Ground Graben, Outer Moray Firth, UK North Sea / Geological Society, London, Special Publications, 114:251-285, doi:10.1144/GSL.SP.1996.114.01.12 --- Michael J. Pearson, Alasdair D. Duncan, and Alasdair D. Duncan: Biomarker maturity profiles in the Inner Moray Firth Basin and implications for inversion estimates / Geological Society, London, Special Publications, 114:287-298, doi:10.1144/GSL.SP.1996.114.01.13 --- B. Dickinson: The Puffin Field: the appraisal of a complex HP-HT gas-condensate accumulation / Geological Society, London, Special Publications, 114:299-327, doi:10.1144/GSL.SP.1996.114.01.14 --- Susan Currie: The development of the Ivanhoe, Rob Roy and Hamish Fields, Block 15/21A, UK North Sea / Geological Society, London, Special Publications, 114:329-341, doi:10.1144/GSL.SP.1996.114.01.15
    Pages: Online-Ressource (350 Seiten) , Illustrationen, Diagramme, Karten
    ISBN: 1897799705
    Language: English
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  • 2
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer
    Associated volumes
    Call number: 10/M 97.0067
    In: Minerals and rocks
    Type of Medium: Monograph available for loan
    Pages: XIX, 422 S.
    ISBN: 3540553614
    Series Statement: Minerals and rocks 21
    Classification:
    Petrology, Petrography
    Language: English
    Location: Reading room
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  • 3
    Call number: PIK M 390-97-0119
    In: Springer-Lehrbuch
    Type of Medium: Monograph available for loan
    Pages: 320 S.
    Edition: 2. überarb. Aufl.
    ISBN: 3540619054
    Series Statement: Springer-Lehrbuch
    Location: A 18 - must be ordered
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  • 4
    Call number: PIK M 311-03-0111
    In: Die Grundlehren der mathematischen Wissenschaften
    Type of Medium: Monograph available for loan
    Pages: XI, 430 S.
    Edition: 2. ed
    ISBN: 0387983627
    Series Statement: Die Grundlehren der mathematischen Wissenschaften
    Uniform Title: Fluktuacii v dinamičeskich sistemach pod dejstviem malych slučajnych vozmuščenij
    Language: English
    Location: A 18 - must be ordered
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  • 5
    Monograph available for loan
    Monograph available for loan
    Dordrecht [u.a.] : Kluwer
    Associated volumes
    Call number: PIK N 454-95-0188
    In: NATO ASI series
    Type of Medium: Monograph available for loan
    Pages: 667 p.
    ISBN: 0792313984
    Series Statement: NATO ASI series
    Location: A 18 - must be ordered
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  • 6
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer
    Associated volumes
    Call number: 9/M 94.0328
    In: IGCP project
    Type of Medium: Monograph available for loan
    Pages: XVI, 514 S.
    ISBN: 3540565027
    Series Statement: IGCP project 233
    Classification:
    Regional Geology
    Language: English
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  • 7
    Monograph available for loan
    Monograph available for loan
    London : The Geological Society
    Associated volumes
    Call number: 9/M 93.0905
    In: Geological Society special publication
    Description / Table of Contents: Sedimentary basins with a marine connection show significant stratigraphic variations that result from eustatic sea-level fluctuation. Other key factors that control stratigraphy include the availability of sediment and the role of tectonically induced subsidence and uplift. Tectonic activity is important in most sedimentary basins as it is a causal mechanism for the production of certain regionaland local-scale sequence boundaries, generating accommodation space, altering base levels and controlling source areas. This collection of academic and industrial studies addresses the relative roles of tectonics, eustasy and sediment supply in generating stratigraphy. This volume will be of interest to petroleum geologists and researchers in sequence stratigraphy.
    Type of Medium: Monograph available for loan
    Pages: 226 S. , Ill., graph. Darst., Kt.
    ISBN: 0903317877
    Series Statement: Geological Society special publication 71
    Classification:
    Tectonics
    Language: English
    Note: G. D. Williams: Tectonics and seismic sequence stratigraphy: an introduction / Geological Society, London, Special Publications, 71:1-13, doi:10.1144/GSL.SP.1993.071.01.01 --- J. A. Cartwright, R. C. Haddock, and L. M. Pinheiro: The lateral extent of sequence boundaries / Geological Society, London, Special Publications, 71:15-34, doi:10.1144/GSL.SP.1993.071.01.02 --- Sarah Prosser: Rift-related linked depositional systems and their seismic expression / Geological Society, London, Special Publications, 71:35-66, doi:10.1144/GSL.SP.1993.071.01.03 --- David Waltham, Stuart Hardy, and Abdulnaser Abousetta: Sediment geometries and domino faulting / Geological Society, London, Special Publications, 71:67-85, doi:10.1144/GSL.SP.1993.071.01.04 --- Alan M. Roberts, Graham Yielding, and Michael E. Badley: Tectonic and bathymetric controls on stratigraphic sequences within evolving half-graben / Geological Society, London, Special Publications, 71:87-121, doi:10.1144/GSL.SP.1993.071.01.05 --- Aidan M. Joy: Comments on the pattern of post-rift subsidence in the Central and Northern North Sea Basin / Geological Society, London, Special Publications, 71:123-140, doi:10.1144/GSL.SP.1993.071.01.06 --- W. G. Higgs and K. R. McClay: Analogue sandbox modelling of Miocene extensional faulting in the Outer Moray Firth / Geological Society, London, Special Publications, 71:141-162, doi:10.1144/GSL.SP.1993.071.01.07 --- M. P. R. Light, M. P. Maslanyj, R. J. Greenwood, and N. L. Banks: Seismic sequence stratigraphy and tectonics offshore Namibia / Geological Society, London, Special Publications, 71:163-191, doi:10.1144/GSL.SP.1993.071.01.08 --- Joachim Deramond, Pierre Souquet, Marie-José Fondecave-Wallez, and Martin Specht: Relationships between thrust tectonics and sequence stratigraphy surfaces in foredeeps: model and examples from the Pyrenees (Cretaceous-Eocene, France, Spain) / Geological Society, London, Special Publications, 71:193-219, doi:10.1144/GSL.SP.1993.071.01.09
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  • 8
    Call number: AWI G3-96-0166
    In: Ecological studies, 120
    Description / Table of Contents: The discovery of large petroleum reserves in northern Alaska prompted the US National Research Council to recommend priorities for ecological research on disturbance effects in the Arctic. Subsequently, this led to the implementation of a field study by the Department of Energy in a small watershed on the North Slope of Alaska. This volume describes results by a research team charged with seeking answers to a number of questions related to disturbance in tundra regions: will short-term disturbances have long-term ecological consequences? Will localized effects be transferred to adjacent systems, e.g., from terrestrial to aquatic? Is it possible to extrapolate understanding of impacts from one landscape to another? The results reported in this volume are an important contribution towards the goal of implementing ecosystem-based management in arctic tundra landscapes. Landscape function and disturbance in Arctic Tundra covers a broad array of topics, from ecosystem physiology to landscape modeling. It is an important source for researchers and students interested in arctic ecology, as well as for environmental managers concerned with practical issues of disturbance.
    Type of Medium: Monograph available for loan
    Pages: XX, 437 Seiten , Illustrationen , 24 cm
    ISBN: 3-540-59263-6
    Series Statement: Ecological Studies 120
    Language: English
    Note: Contents: I INTRODUCTION. - 1 Ecosystem Response, Resistance, Resilience, and Recovery in Arctic Landscapes: Introduction / J. F. Reynolds and J. D. Tenhunen. - 1.1 Introduction. - 1.2 NRC Committee Report. - 1.3 The R4D Program. - 1.3.1 Objectives and Conceptual Framework. - 1.3.2 Program Implementation. - 1.3.3 Landscape Function. - 1.4 Summary. - References. - 2 Integrated Ecosystem Research in Northern Alaska, 1947-1994 / G. R. Shaver. - 2.1 Introduction. - 2.2 Early Days at NARL. - 2.3 The U.S. Tundra Biome Program. - 2.4 The Meade River RATE Program. - 2.5 Eagle Creek and Eagle Summit. - 2.6 The Arctic LTER Program at Toolik Lake. - 2.7 Other Studies In Alaska and Elsewhere. - 2.8 Summary and Prospects. - References. - 3 Disturbance and Recovery of Arctic Alaskan Vegetation / D. A. Walker. - 3.1 Introduction. - 3.2 Disturbance and Recovery. - 3.3Typical Disturbance and Recovery Patterns. - 3.3.1 Small Disturbed Patches. - 3.3.2 Contaminants. - 3.3.2.1 Hydrocarbon Spills. - 3.3.2.2 Seawater and Reserve-Pit Spills. - 3.3.3 Fire. - 3.3.4 Transportation Corridors. - 3.3.4.1 Bulldozed Tundra and Related Disturbances. - 3.3.4.2 Off-Road Vehicle Trails. - 3.3.4.2.1 Summer Travel. - 3.3.4.2.2 Winter Travel. - 3.3.4.3 Permanent Roads and Pads. - 3.3.4.4 Gravel Mines. - 3.3.4.5 Native Species in Revegetation of Gravel Pads and Mines. - 3.3.4.6 Road Dust. - 3.3.4.7 Roadside Impoundments. - 3.3.5 Cumulative Impacts. - 3.4 Conclusions. - References. - 4 Terrain and Vegetation of the Imnavait Creek Watershed / D. A. Walker and M. D. Walker. - 4.1 Introduction. - 4.2 Terrain. - 4.2.1 Glacial Deposits. - 4.2.2 Retransported Hillslope Deposits. - 4.2.3 Colluvial Basin Deposits. - 4.2.4 Floodplain Deposits. - 4.3 Vegetation. - 4.3.1 Flora. - 4.3.2 Vegetation Types. - 4.3.2.1 Lichen-Covered Rocks. - 4.3.2.2 Dry Heath. - 4.3.2.2.1 Exposed Sites. - 4.3.2.2.2 Snowbeds. - 4.3.2.3 Tussock Tundra. - 4.3.2.4 Riparian Areas. - 4.3.2.5 Mires. - 4.3.2.6 Beaded Ponds. - 4.4 West-Facing Toposequence. - 4.5 Terrain Sensitivity to Disturbance. - 4.6 Conclusions. - Appendix A. List of Plants for Imnavait Creek, Alaska. - References. - 5 Vegetation Structure and Aboveground Carbon and Nutrient Pools in the Imnavait Creek Watershed / S. C. Hahn, S. F. Oberbauer, R. Gebauer, N. E. Grulke, O. L. Lange, and J. D. Tenhunen. - 5.1 ntroduction. - 5.2 Description of Vegetation. - 5.3 Sampling Methods. - 5.3.1 Cover. - 5.3.2 Biomass and Nutrient Pools. - 5.4 Cover. - 5.5 Aboveground Biomass. - 5.5.1 Live Biomass. - 5.5.2 Photosynthetic Biomass. - 5.5.3 Lichen Biomass. - 5.5.4 Organic Litter. - 5.5.5 Watershed Patterns. - 5.6 Nutrient Pools. - 5.6.1 N and P in Heath Cryptogams. - 5.6.2 N and P in Communities. - 5.7 Discussion and Conclusions. - References. - II PHYSICAL ENVIRONMENT, HYDROLOGY, and TRANSPORT. - 6 Energy Balance and Hydrological Processes in an Arctic Watershed / L. Hinzmann, D. L. Kane, C. S. Benson, and K. R. Everett. - 6.1 Introduction. - 6.2 Radiation and Thermal Regimes. - 6.2.1 Surface Energy Balance. - 6.2.2 Snow Cover and Soil Thermal Regime. - 6.3 Hydrological Processes. - 6.3.1 Snowmelt. - 6.3.2 Plot and Basin Water Balance. - 6.3.3 Runoff and Basin Discharge. - 6.3.4 Precipitation, Evaporation, and Evapotranspiration. - 6.4 Energy Balance and Hydrology Models. - 6.4.1 Simulation of the Thermal Regime. - 6.4.2 Simulation of Snowmelt. - 6.4.3 Simulation of Catchment Runoff. - 6.5 Conclusions. - References. - 7 Shortwave Reflectance Properties of Arctic Tundra Landscapes / A. S. Hope and D. A. Stow. - 7.1 Introduction. - 7.2 Shortwave Reflectance Studies in Arctic Environments. - 7.2.1 Environmental Considerations. - 7.2.2 Radiometric Data. - 7.2.3 Image Data. - 7.3 Spectral Reflectance. - 7.3.1 Aboveground Biomass. - 7.3.2 Vegetation Composition. - 7.3.3 Landscape Patterns. - 7.3.4 Effects of Dust Deposition. - 7.4 Albedo. - 7.4.1 Undisturbed Tussock Tundra. - 7.4.2 Effects of Dust Deposition. - 7.5 Conclusions. - References. - 8 Isotopic Tracers for Investigating Hydrological Processes / L. W. Cooper, I. L. Larsen, C. Solis, J. M. Grebmeier, C. R. Olsen, D. K. Solomon, and R. B. Cook. - 8.1 Introduction. - 8.1.1 Units. - 8.1.2 Conservative vs Nonconservative Isotopes. - 8.2 Nonconservative Tracers. - 8.3 Sulfur-35. - 8.4 Oxygen-18. - 8.4.1 Oxygen-18 Content of Snowpack. - 8.4.2 Oxygen-18 Content of Imnavait Creek. - 8.4.3 Oxygen-18 Content of Soil Moisture. - 8.4.4 Covariance of Oxygen-18 and Deuterium in Watershed Compartments. - 8.4.5 Covariance of Oxygen-18 and Deuterium in Plant Water. - 8.5 Long-Lived Radioisotopes: Lead-210 and Cesium-137. - 8.5.1 Distribution of 137Cs on Tundra and in Lake Sediments. - 8.5.2 Cycling of 137Cs in Annual Berries. - 8.5.3 Distribution of 210Pb in Tundra. - 8.6 Conclusions. - References. - III NUTRIENT AND CARBON FLUXES. - 9 Surface Water Chemistry and Hydrology of a Small Arctic Drainage Basin / K. R. Everett, D. L. Kane, and L. D. Hinzman. - 9.1 Introduction. - 9.2 Watershed Instrumentation. - 9.3 Snowmelt Period. - 9.3.1 Snowmelt Hydrology. - 9.3.2 Snowmelt Chemistry . - 9.3.2.1 Overland Flow. - 9.3.2.2 Water Track Flow. - 9.3.2.3 Imnavait Creek Flow. - 9.4 Post Snowmelt Period. - 9.4.1 Atmospheric Inputs. - 9.4.1.1 Rainfall. - 9.4.1.2 Dry Deposition. - 9.4.1.3 Rime. - 9.4.2 Water Chemistry. - 9.4.2.1 Overland Flow. - 9.4.2.2 Active Layer Flow. - 9.4.2.3 Imnavait Creek Flow. - 9.5 Conclusions. - References. - 10 Nutrient Availability and Uptake by Tundra Plants / J. P. Schimel, K. Kielland, and F. S. Chapin III. - 10.1 Introduction. - 10.2 Controls on Mineralization and Nutrient Supply. - 10.2.1 Patterns of Nutrient Supply in the Soil. - 10.2.2 Patterns of Mineralization. - 10.2.3 Controls on N and P Mineralization. - 10.2.4 Controls on Decomposition and Mineralization. - 10.2.4.1 Temperature. - 10.2.4.1.1 Enzyme Activities. - 10.2.4.1.2 Microbial Activity at Low Temperatures. - 10.2.4.1.3 Freeze-Thaw Events. - 10.2.4.2 Effects of Low Oxygen on Microbial Activity and Mineralization. - 10.2.4.3 Substrate Quality. - 10.3 Fate of Available Nutrients. - 10.3.1 Microbial Nutrient Uptake and Competition with Plants. - 10.3.2 Plant Uptake. - 10.3.2.1 Soil Factors Controlling Nutrient Absorption. - 10.3.2.2 Rooting Strategies. - 10.3.2.3 Uptake Characteristics of Tundra Plants. - 10.3.2.4 Retranslocation vs Current Uptake. - 10.4 Disturbances. - 10.4.1 Vehicle Tracks. - 10.4.2 Road Dust. - 10.4.3 Gray Water. - 10.4.4 Climate Change. - References. - 11 Landscape Patterns of Carbon Dioxide Exchange in Tundra Ecosytems / S. F. Oberbauer, W. Cheng, C. T. Gillespie, B. Ostendorf, A. Sala, R. Gebauer, R. A. Virginia, and J. D. Tenhunen. - 11.1 Introduction. - 11.2 Methods. - 11.2.1 Community Types. - 11.2.2 Leaf Photosynthesis. - 11.2.3 Ecosystem Efflux. - 11.2.4 Ecosystem Net CO2 Exchange. - 11.3 CO2 Uptake. - 11.3.1 Factors Affecting CO2 Uptake. - 11.3.1.1 Light. - 11.3.1.2 Temperature. - 11.3.1.3 Phenology. - 11.3.1.4 Water Availability. - 11.3.1.5 Nutrition. - 11.3.2 Landscape Patterns in Leaf Photosynthesis. - 11.4 CO2 Efflux. - 11.4.1 Factors Affecting CO2 Efflux. - 11.4.1.1 Live Plant Biomass. - 11.4.1.2 Soil Quality. - 11.4.1.3 Thaw Depth and Depth to Water Table. - 11.4.1.4 Soil Moisture. - 11.4.1.5 Soil Temperature. - 11.4.2 Landscape Patterns of CO2 Efflux. - 11.4.3 Daily and Seasonal Patterns of CO2 Efflux. - 11.4.4 Dust Deposition Effects on CO2 Efflux. - 11.5 Landscape Patterns in Net CO2 Exchange. - 11.6 Conclusions. - References. - 12 Control of Tundra Methane Emission by Microbial Oxidation / S. C. Whalen, W. S. Reeburgh, and C. E. Reimers. - 12.1 Introduction. - 12.2 Sampling Procedure. - 12.3 Results and Discussion. - 12.3.1 Methane Flux and Environmental Variables in Tundra and Taiga. - 12.3.2 Physiology, Controls, and Potential for Microbial CH4 Oxidation. - 12.3.3 Methane Oxidation by Tundra Soils in a Warmer Climate. - 12.4 Conclusions. - References. - 13 Dynamics of Dissolved and Particulate Car
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  • 9
    Call number: AWI A12-00-0059
    Type of Medium: Monograph available for loan
    Pages: XVIII, 232 S.
    ISBN: 0792382455
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  • 10
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer
    Associated volumes
    Call number: AWI G7-92-0173
    In: Springer series in physical environment
    Description / Table of Contents: Contents: Part I Fundamentals. - 1 The Glacier System. - 1.1 General. - 1.2 Input and Output. - 1.3 Ice Flow. - 1.4 Ice Residence Time. - 1.5 Distribution of Ice Fabrics and Textures. - 1.6 Ice Foliation. - 1.7 Basic Ice Types in Different Glacial Systems. - 2 Ice Composition. - 2.1 Stable Isotopes and the Water Cycle. - 2.2 Stable Isotopes in Snow. - 2.3 Isotopic Changes During the Transformation of Snow into Ice. - 2.4 Stable Isotope Fractionation by Freezing. - 2.5 Impurities and Phase Equilibria. - 2.6 Self-Purification and Leaching of Impurities. - 2.7 Mineral Particles in Ice. - 2.8 Gases in Ice. - Part II Implications on Glacier Dynamics. - 3 Ice Composition and Ice Flow: a General View. - 3.1 Gas Content and Ice Sheet Profiles. - 3.2 Impurities in Ice and Ice Creep. - 3.3 Isotopes and Flow in Ice Sheets and Ice Caps. - 3.4 Lead 210 in Ice and Alpine Glacier Flow. - 3.5 Mineral Particles in Ice and Glacier Flow. - 3.6 Evidence for Buried Glacier Ice. - 4 The Basal Zone of Ice Caps and Ice Sheets. - 4.1 Thermal Conditions at the Glacier Sole. - 4.2 The Effective Bed. - 4.3 The Basal Zone in Ice Cores. - 4.4 Investigations in Marginal Areas. - 5 The Basal Zone of Alpine Glaciers. - 5.1 Water Flow in the Basal Zone. - 5.2 Phase Changes at the Base of Alpine Glaciers. - 5.3 Incorporation of Debris into Basal Ice. - 5.4 Basal Ice Chemistry. - 5.5 Subglacial Precipitates and Basal Ice. - 5.6 Isotopes in the Basal Zone of Alpine Glaciers. - 6 The Contact Zone Between Glacier and Ocean. - 6.1 Ice Shelves and Tidewater Glaciers. - 6.2 Melting and Freezing at the Base of Ice Shelves. - 6.3 Frazil and Congelation Ice. - 6.4 Isotope and Impurity Distribution. - 6.5 The Case of the Ward Hunt Ice Shelf. - 6.6 Freezing Rates in the Marine Environment. - 6.7 The Glacial Supply to the Ocean. - Conclusion: Ice Composition, Glacier Dynamics and Global Changes. - References. - Subject Index.
    Description / Table of Contents: The study of ice composition represents an effective tool in our understanding of the dynamics of glaciers, ice sheets and ice shelves. The authors relate the distribution of isotopes and impurities in ice masses to ice flow, to the key zone close to the ice-substratum interface and to the mechanisms effective in the contact zone between glacier and ocean. The reader will find a wealth of information in this book, based on the long-range experience of the authors. It contributes to the understanding of global changes that may be induced by a climatic warming due to anthropogenic activities.
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    Pages: X, 207 S. : Ill., graph. Darst., Kt.
    ISBN: 3540525211
    Series Statement: Springer series in physical environment 8
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