Paleoclimatology: reconstructing climates of the Quaternary
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
San Diego [u.a.]
Harcourt
1999
|
Ausgabe: | 2. ed. |
Schriftenreihe: | International geophysics series
64 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XV, 613 S. zahlr. Ill., graph. Darst. |
ISBN: | 012124010X |
Internformat
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Datensatz im Suchindex
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adam_text | Titel: Paleoclimatology
Autor: Bradley, Raymond S
Jahr: 1999
CONTENTS
PREFACE xiii
ACKNOWLEDGMENTS xv
1 Paleoclimatic Reconstruction
1.1 Introduction 1
1.2 Sources of Paleoclimatic Information 4
1.3 Levels of Paleoclimatic Analysis 8
1.4 Modeling in Paleoclimatic Research 9
2 Climate and Climatic Variation
2.1 The Nature of Climate and Climatic Variation 11
2.2 The Climate System 15
2.3 Feedback Mechanisms 22
2.4 Energy Balance of the Earth and its Atmosphere 24
2.5 Timescales of Climatic Variation 32
2.6 Variations of the Earth s Orbital Parameters 35
VII
VÜi CONTENTS
3 Dating Methods I
3.1 Introduction and Overview 47
3.2 Radioisotopic Methods 48
3.2.1 Radiocarbon Dating 50
3.2.1.1 Principles of 14C dating 51
3.2.1.2 Measurement Procedures, Materials, and Problems 53
3.2.1.3 Accuracy of Radiocarbon Dates 54
3.2.1.4 Sources of Error in 14C Dating 54
3.2.1.5 Long-term Changes in Atmospheric 14C Content 62
3.2.1.6 Causes of Temporal Radiocarbon Variations 68
3.2.1.7 Radiocarbon Variations and Climate 71
3.2.2 Potassium-argon Dating (^K/40Ar) 73
3.2.2.1 Problems of 40K/40Ar Dating 74
3.2.2.2 40Ar/39Ar Dating 74
3.2.3 Uranium-series Dating 76
3.2.3.2 Problems of U-series Dating 80
3.2.4 Luminescence Dating: Principles and Applications 80
3.2.4.1 Thermoluminescence (TL) Dating 84
3.2.4.2 Problems of Thermoluminescence Dating 85
3.2.4.3 Optical and Infrared Stimulated Luminescence (OSL and IRSL) Dating 86
3.2.5 Fission-track Dating 89
4 Dating Methods II
4.1 Paleomagnetism 91
4.1.1 The Eartb s Magnetic Field 92
4.1.2 Magnetization of Rocks and Sediments 93
4.1.3 The Paleomagnetic Timescale 95
4.1.4 Geomagnetic Excursions 96
4.1.5 Secular Variations ofthe Earth s Magnetic Field 97
4.2 Dating Methods Involving Chemical Changes 99
4.2.1 Amino-acid Dating 100
4.2.1.1 Principles of Amino-acid Dating 100
4.2.1.2 Numerical Age Estimates Based on Amino-acid Ratios 106
4.2.1.3 Relative Age Estimates Based on Amino-acid Ratios 109
4.2.1.4 Paleotemperature Estimates from Amino-acid Racemization and
Epimerization 110
4.2.2 Obsidian Hydration Dating 112
4.2.3 Tephrochronology 113
4.3 Biological Dating Methods 116
4.3.1 Lichenometry 116
4.3.1.1 Principles of Lichenometry 116
4.3.1.2 Problems of Lichenometry 117
4.3.2 Dendrochronology 123
CONTENTS JX
5 Ice Cores
5.1 Introduction 125
5.2 Stable Isotope Analysis 126
5.2.1 Stable Isotopes in Water: Measurement and Standardization 130
5.2.2 Oxygen-18 Concentration in Atmospheric Precipitation 132
5.2.3 Geographical Factors Affecting Stable Isotope Concentrations 132
5.2.4 Calibrating8lsO for Paleotemperature Reconstructions 135
5.2.5 Deuterium Excess 139
5.3 Dating Ice Cores 142
5.3.1 Radioisotopic Methods 142
5.3.2 Seasonal Variations 143
5.3.3 Reference Horizons 147
5.3.4 Theoretical Models 151
5.3.5 Stratigraphic Correlations 153
5.4 Paleoclimatic Reconstruction from Ice Cores 153
5.4.1 Ice-core Records from Antarctica 154
5.4.2 Ice-core Records from Greenland 158
5.4.3 Fast Atmospheric Composition from Polar Ice Cores 166
5.4.4 Volcanic Eruptions Recorded in Ice Cores 177
5.4.5 Correlation of Ice-core Records from Greenland and Antarctica 181
5.4.6 Correlation Between Ice Cores and Marine Sediments 184
5.4.7 Ice-core Records from Low Latitudes 186
6 Marine Sediments and Corals
6.1 Introduction 191
6.2 Paleoclimatic Information from Biological Material in Ocean Cores 193
6.3 Oxygen Isotope Studies of Calcareous Marine Fauna 198
6.3.1 Oxygen Isotopic Composition of the Oceans 199
6.3.2 Oxygen Isotope Stratigraphy 206
6.3.3 Orbital Tuning 210
6.3.4 Sea-level Changes and hlsO 215
6.4 Relative Abundance Studies 216
6.4.1 North Atlantic Ocean 226
6.4.2 Pacific Ocean 228
6.4.3 Indian Ocean 232
6.5 Paleotemperature Records from Alkenones 233
6.6 Dissolution of Deep-sea Carbonates 236
6.7 Paleoclimatic Information from Inorganic Material in Ocean Cores 242
6.8 Coral Records of Past Climate 247
6.8.1 Paleoclimate from Coral Growth Rates 249
6.8.2 blsO in Corals 250
6.8.3 8 C in Corals 253
6.8.4 A C in Corals 253
6.8.5 Trace Elements in Corals 253
CONTENTS
6.9 Thermohaline Circulation of the Oceans 254
6.10 Ocean Circulation Changes and Climate over the Last Glacial-
Interglacial Cycle 260
6.10.1 Heinrich Events 261
6.10.2 Environmental Changes at the End ofthe Last Glaciation 268
6.11 Changes in Atmospheric Carbon Dioxide: the Role of the Oceans 276
6.12 Orbital Forcing: Evidence from the Marine Record 280
7 Non-marine Geological Evidence
7.1 Introduction 285
7.2 Loess 286
7.2.1 Chronology of Loess-paleosol Sequences 287
7.2.2 Paleoclimatic Significance of Loess Paleosol Sequences 290
7.3 Periglacial Features 293
7.4 Snowlines and Glaciation Thresholds 297
7.4.2 The Climatic and Paleoclimatic Interpretation of
Snowlines 300
7.4.2 The Age of Former Snowlines 302
7.5 Mountain Glacier Fluctuations 304
7.5.1 Evidence of Glacier Fluctuations 307
7.5.2 The Record of Glacier Front Positions 308
1.6 Lake-level Fluctuations 310
7.6.1 Hydrological Balance Models 313
7.6.2 Hydrological-Energy Balance Models 317
7.6.3 Regional Patterns of Lake-level Fluctuations 317
7.7 Lake Sediments 324
7.8 Speleothems 326
7.8.1 Paleoclimatic Information from Periods of Speleothem
Growth 327
7.8.2 Dating of Speleothems and the Significance of Depositional
Intervals 327
7.8.3 Isotopic Variations in Speleothems 329
7.8.4 Speleothems as Indicators ofSea-level Variations 334
8 Non-marine Biological Evidence
8.1 Introduction 337
8.2 Former Vegetation Distribution from Plant Macrofossils 337
8.2.1 Arctic Treeline Fluctuations 338
8.2.2 Alpine Treeline Fluctuations 341
8.2.3 Lower Treeline Fluctuations 344
8.3 Insects 348
8.3.1 Paleoclimatic Reconstructions Based on Fossil Coleoptera 350
8.3.2 Paleoclimatic Reconstruction Based on Aquatic Insects 354
CONTENTS Xi
9 Pollen Analysis
9.1 Introduction 357
9.2 The Basis of Pollen Analysis 358
9.2.1 Pollen Grain Characteristics 358
9.2.2 Pollen Productivity and Dispersal: the Pollen Rain 359
9.2.3 Sources of Fossil Pollen 362
9.2.4 Preparation of the Samples 363
9.2.5 Pollen Rain as a Representation of Vegetation Composition and Climate 363
9.2.6 Maps of Modern Pollen Data 365
9.3 How Rapidly Does Vegetation Respond to Changes in Climate? 365
9.4 Pollen Analysis of a Site: the Pollen Diagram 370
9.4.1 Zonation of the Pollen Diagram 372
9.5 Mapping Vegetation Change: Isopolls and Isochrones 373
9.6 Quantitative Paleoclimatic Reconstructions Based on Pollen Analysis 375
9.7 Paleoclimatic Reconstruction from Long Quaternary Pollen Records 384
9.7.1 Europe 384
9.7.2 Sabana de Bogota, Colombia 387
9.7.3 Amazonia 389
9.7.4 Equatorial Africa 391
9.7.5 Florida 395
10 Dendroclimatology
10.1 Introduction 397
10.2 Fundamentals of Dendroclimatology 398
10.2.1 Sample Selection 400
10.2.2 Cross-dating 403
10.2.3 Standardization of Ring-width Data 406
10.2.4 Calibration of Tree-ring Data 412
10.2.5 Verification of Climatic Reconstructions 421
10.3 Dendroclimatic Reconstructions 423
10.3.1 Temperature Reconstruction from Trees at the Northern Treeline 423
10.3.2 Drought Reconstruction from Midlatitude Trees 426
10.3.3 Paleohydrology from Tree Rings 432
10.4 Isotope Dendroclimatology 434
10.4.1 Isotopic Studies of Subfossil Wood 436
11 Documentary Data
11.1 Introduction 439
11.2 Historical Records and Their Interpretation 441
11.2.1 Historical Weather Observations 444
11.2.2 Historical Records of Weather-dependent Natural Phenomena 448
11.2.3 Phenological and Biological Records 454
XII CONTENTS
11.3 Regional Studies Based on Historical Records 460
11.3.1 EastAsia 460
11.3.2 Europe 461
11.4 Records of Climate Forcing Factors 468
12 Paleoclimate Models
12.1 Introduction 471
12.2 Types of Models 472
12.2.1 Energy Balance Models and Statistical Dynamical Models 473
12.2.2 Radiative Convective Models 474
12.2.3 General Circulation Models 475
12.3 Sensitivity Experiments Using General Circulation Models 480
12.3.1 Orbital Forcing and the Initiation of Continental Glaciation in the
Northern Hemisphere 481
12.3.2 Orbital Forcing and Monsoon Climate Variability 486
12.3.3 The Influence of Continental Ice Sheets 490
12.4 Model Simulations: 18 ka B.P. to the Present 495
12.5 Coupled Ocean-atmosphere Model Experiments 499
12.6 General Circulation Model Paleoclimate Simulations and
the Paleorecord 505
APPENDIX A: FURTHER CONSIDERATIONS ON RADIOCARBON DATING 507
A.1 Calculation of Radiocarbon Age and Standardization Procedure 507
A.2 Fractionation Effects 508
APPENDIX B: WORLDWIDE WEB-BASED RESOURCES IN PALEOCLIMATOLOGY 511
REFERENCES 513
INDEX 595
|
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spelling | Bradley, Raymond S. 1948- Verfasser (DE-588)171987411 aut Paleoclimatology reconstructing climates of the Quaternary Raymond S. Bradley 2. ed. San Diego [u.a.] Harcourt 1999 XV, 613 S. zahlr. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier International geophysics series 64 Paläoklima (DE-588)4288494-9 gnd rswk-swf Historische Geologie (DE-588)4025104-4 gnd rswk-swf Paläoklimatologie (DE-588)4173112-8 gnd rswk-swf Quartär (DE-588)4048009-4 gnd rswk-swf Quartär (DE-588)4048009-4 s Paläoklima (DE-588)4288494-9 s Paläoklimatologie (DE-588)4173112-8 s Historische Geologie (DE-588)4025104-4 s 1\p DE-604 International geophysics series 64 (DE-604)BV000005107 64 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022058145&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Bradley, Raymond S. 1948- Paleoclimatology reconstructing climates of the Quaternary International geophysics series Paläoklima (DE-588)4288494-9 gnd Historische Geologie (DE-588)4025104-4 gnd Paläoklimatologie (DE-588)4173112-8 gnd Quartär (DE-588)4048009-4 gnd |
subject_GND | (DE-588)4288494-9 (DE-588)4025104-4 (DE-588)4173112-8 (DE-588)4048009-4 |
title | Paleoclimatology reconstructing climates of the Quaternary |
title_auth | Paleoclimatology reconstructing climates of the Quaternary |
title_exact_search | Paleoclimatology reconstructing climates of the Quaternary |
title_full | Paleoclimatology reconstructing climates of the Quaternary Raymond S. Bradley |
title_fullStr | Paleoclimatology reconstructing climates of the Quaternary Raymond S. Bradley |
title_full_unstemmed | Paleoclimatology reconstructing climates of the Quaternary Raymond S. Bradley |
title_short | Paleoclimatology |
title_sort | paleoclimatology reconstructing climates of the quaternary |
title_sub | reconstructing climates of the Quaternary |
topic | Paläoklima (DE-588)4288494-9 gnd Historische Geologie (DE-588)4025104-4 gnd Paläoklimatologie (DE-588)4173112-8 gnd Quartär (DE-588)4048009-4 gnd |
topic_facet | Paläoklima Historische Geologie Paläoklimatologie Quartär |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022058145&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000005107 |
work_keys_str_mv | AT bradleyraymonds paleoclimatologyreconstructingclimatesofthequaternary |