Remote sensing of the cryosphere:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Oxford [u.a.]
Wiley Blackwell
2015
|
Ausgabe: | 1. publ. |
Schriftenreihe: | Wiley-Blackwell cryosphere science series
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references and index |
Beschreibung: | XXII, 403 S. Ill., graph. Darst., Kt. |
ISBN: | 9781118368855 |
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adam_text | Titel: Remote sensing of the cryosphere
Autor: Tedesco, Marco
Jahr: 2015
Table of contents
List of contributors xv
Cryosphere Science: Series Preface xix
Preface xxi
Acknowledgments xxiii
About the companion website xxiv
1 Remote sensing and the cryosphere 1
1.1 Introduction 1
1.2 Remote sensing 2
1.2.1 The electromagnetic spectrum and blackbody radiation 2
1.2.2 Passive systems 4
1.2.3 Active systems 9
1.3 The cryosphere 12
References 16
2 Electromagnetic properties of components of the cryosphere 17
2.1 Electromagnetic properties of snow 17
2.1.1 Visible/near-infrared and thermal infrared 17
2.1.2 Microwave region 18
2.2 Electromagnetic properties of sea ice 22
2.2.1 Visible/near-infrared and thermal infrared 22
2.2.2 Microwave region 22
2.3 Electromagnetic properties of freshwater ice 24
2.4 Electromagnetic properties of glaciers and ice sheets 25
2.4.1 Visible/near-infrared and thermal infrared 25
2.4.2 Microwave region 25
2.5 Electromagnetic properties of frozen soil 26
2.5.1 Visible/near-infrared and thermal infrared 26
2.5.2 Microwave region 26
References 27
Acronyms 29
Websites cited 29
3 Remote sensing of snow extent 31
3.1 Introduction 32
3.2 Visible/near-infrared snow products 32
3.2.1 The normalized difference snow index (NDSI) 34
3.3 Passive microwave products 36
3.4 Blended VNIR/PM products 37
3.5 Satellite snow extent as input to hydrological models 37
X I Table of contents
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
40
40
41
46
47
48
48
51
54
57
62
68
69
69
72
72
73
73
74
74
77
79
81
88
90
92
97
98
99
99
100
100
101
102
104
107
107
108
113
116
117
122
Table of contents | xi
7 Remote sensing of glaciers 123
7.1 Introduction 124
7.2 Fundamentals 125
7.3 Satellite instruments for glacier research 128
7.4 Methods 132
7.4.1 Image classification for glacier mapping 132
7.4.2 Mapping debris-covered glaciers 134
7.4.3 Glacier mapping with SAR data 136
7.4.4 Assessing glacier changes 137
7.4.5 Area and length changes 138
7.4.6 Volumetric glacier changes 139
7.4.7 Glacier velocity 140
7.5 Glaciers of the Greenland ice sheet 142
7.5.1 Surface elevation 142
7.5.2 Glacier extent 142
7.5.3 Glacier dynamics 144
7.6 Summary 145
References 148
Acronyms 156
Websites cited 156
8 Remote sensing of accumulation over the Greenland and Antarctic
ice sheets 157
8.1 Introduction to accumulation 158
8.2 Spaceborne methods for determining accumulation over ice
sheets 160
8.2.1 Microwave remote sensing 161
8.2.2 Other remote sensing techniques and combined
methods 169
8.3 Airborne and ground-based measurements of accumulation 171
8.3.1 Ground-based 171
8.3.2 Airborne 173
8.4 Modeling of accumulation 174
8.5 The future for remote sensing of accumulation 177
8.6 Conclusions 178
References 178
Acronyms 185
Website cited 186
9 Remote sensing of ice thickness and surface velocity 187
9.1 Introduction 187
9.1.1 Electrical properties of glacial ice 188
9.2 Radar principles 190
9.2.1 Radar sounder 190
9.2.2 Radar equation 192
xii I Table of contents
9.3 Pulse compression 196
9.4 Antennas 200
9.5 Example results 205
9.6 SAR and array processing 210
9.7 SAR Interferometry 213
9.7.1 Introduction 213
9.7.2 Basic theory 214
9.7.3 Practical considerations of InSAR systems 216
9.7.4 Application of InSAR to Cryosphere remote sensing 219
9.8 Conclusions 225
References 226
Acronyms 230
10 Gravimetry measurements from space 231
10.1 Introduction 231
10.2 Observing the Earths gravity field with inter-satellite ranging 232
10.3 Surface mass variability from GRACE 234
10.4 Results 240
10.5 Conclusions 244
References 244
Acronyms 247
11 Remote sensing of sea ice 248
11.1 Introduction 249
11.2 Sea ice concentration and extent 251
11.2.1 Passive microwave radiometers 251
11.2.2 Active microwave - scatterometry and radar 255
11.2.3 Visible and infrared 257
11.2.4 Operational sea ice analyses 257
11.3 Sea ice drift 257
11.4 Sea ice thickness and age, and snow depth 259
11.4.1 Altimetric thickness estimates 259
11.4.2 Radiometric thickness estimates 262
11.4.3 Sea ice age estimates as a proxy for ice thickness 262
11.5 Sea ice melt onset and freeze-up, albedo, melt pond fraction
and surface temperature 263
11.5.1 Melt onset and freeze-up 263
11.5.2 Sea ice albedo and melt pond fraction 265
11.5.3 Sea ice surface temperature 265
11.6 Summary, challenges and the road ahead 267
References 268
Acronyms 272
Website cited 272
12 Remote sensing of lake and river ice 273
12.1 Introduction 274
Table of contents | xiii
12.2 Remote sensing of lake ice 276
12.2.1 Ice concentration, extent and phenology 277
12.2.2 Ice types 283
12.2.3 Ice thickness and snow on ice 284
12.2.4 Snow/ice surface temperature 285
12.2.5 Floating and grounded ice: the special case of shallow
Arctic/sub-Arctic lakes 287
12.3 Remote sensing of river ice 289
12.3.1 Ice extent and phenology 289
12.3.2 Ice types, ice jams and flooded areas 291
12.3.3 Ice thickness 293
12.3.4 Surface flow velocities 294
12.3.5 Incorporating SAR-derived ice information into a
GIS-based system in support of river-flow modeling
and flood forecasting 295
12.4 Conclusions and outlook 297
Acknowledgments 297
References 298
Acronyms 304
Websites cited 306
13 Remote sensing of permafrost and frozen ground 307
13.1 Permafrost - an essential climate variable of the Global
Climate Observing System 308
13.2 Mountain permafrost 311
13.2.1 Remote sensing of surface features and permafrost
landforms 312
13.2.2 Generation of digital elevation models 312
13.2.3 Terrain elevation change and displacement 314
13.3 Lowland permafrost - identification and mapping of surface
features 317
13.3.1 Land cover and vegetation 317
13.3.2 Permafrost landforms 318
13.3.3 Landforms and processes indicating permafrost
degradation 320
13.4 Lowland permafrost - remote sensing of physical variables
related to the thermal permafrost state 323
13.4.1 Land surface temperature through thermal remote
sensing 324
13.4.2 Freeze-thaw state of the surface soil through
microwave remote sensing 326
13.4.3 Permafrost mapping with airborne electromagnetic
surveys 326
13.4.4 Regional surface deformation through radar
interferometry 327
13.4.5 A gravimetric signal of permafrost thaw? 327
xiv I Table of contents
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 Introduction
15.2 SMOSandSMAP
15.3 CoReH20
15.4 ICESat and ICESat-2
15.5 Operation IceBridge
15.6 CryoSat-2
References
Acronyms
Websites cited
Index
328
329
343
345
346
347
348
348
351
351
354
355
355
356
357
357
357
359
360
367
368
369
371
371
373
374
375
376
380
381
382
382
383
384
384
386
387
391
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392
393
|
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title | Remote sensing of the cryosphere |
title_auth | Remote sensing of the cryosphere |
title_exact_search | Remote sensing of the cryosphere |
title_full | Remote sensing of the cryosphere ed. by M. Tedesco |
title_fullStr | Remote sensing of the cryosphere ed. by M. Tedesco |
title_full_unstemmed | Remote sensing of the cryosphere ed. by M. Tedesco |
title_short | Remote sensing of the cryosphere |
title_sort | remote sensing of the cryosphere |
topic | Cryosphere Remote sensing Textbooks Fernerkundung (DE-588)4016796-3 gnd Inlandeis (DE-588)4225035-3 gnd Meereis (DE-588)4131349-5 gnd Gletscherschwankung (DE-588)4157595-7 gnd Kryosphäre (DE-588)4385553-2 gnd |
topic_facet | Cryosphere Remote sensing Textbooks Fernerkundung Inlandeis Meereis Gletscherschwankung Kryosphäre Antarktis Nordpolarmeer Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=027734535&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT tedescomarco remotesensingofthecryosphere |