Remote sensing of the lower atmosphere: an introduction
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York u.a.
Oxford Univ. Press
1994
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 523 S. Ill., graph. Darst. |
ISBN: | 0195081889 |
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245 | 1 | 0 | |a Remote sensing of the lower atmosphere |b an introduction |c Graeme L. Stephens |
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adam_text | Titel: Remote sensing of the lower atmosphere
Autor: Stephens, Graeme L.
Jahr: 1994
Contents
1. Introductory Surveys, 3
1.1 General Classifications, 3
1.2 The Nature of Inverse Problems, 5
Excursus: The Ø-Posed Nature of the Inversion
Problem, 9
1.3 The Chemical Composition of the Atmosphere, 11
1.4 Vertical Distribution of Pressure and Density, 14
1.5 The Thermal Structure of the Atmosphere, 16
Excursus: Microwave Measurements of Atmospheric
Temperature, 16
1.6 The Particulate Composition of the Atmosphere, 18
1.6.1 Atmospheric Aerosol, 20
1.6.2 Cloud Microphysics, 21
1.7 Satellite Platforms, 25
Excursus: Mechanics of a Satellite Orbit, 26
1.7.1 Satellite Orbits, 27
1.7.2 Selected Historical Highlights, 31
1.8 Notes and Comments, 33
2. The Nature of Electromagnetic
Radiation, 35
Excursus: The Electric Dipole, 35
2.1 The Electromagnetic Spectrum, 36
2.2 Wave Propagation, 38
2.2.1 Mathematical Description, 38
Excursus: The Intensity and Irradiance of
Electromagnetic Radiation, 41
2.2.2 Waves in Three Dimensions, 43
2.2.3 Doppler Effects, 44
2.3 Polarization, 47
2.3.1 Mathematical Description, 48
x Contents
2.3.2 Examples of Polarized Radiation, 52
2.4 Stokes Parameters, 54
Excursus: A Circular Basis for the Description of
Polarization, 57
2.4.1 Measurement of I,Q,U, V, 59
Excursus: Example Calculation ofI,Q,U, V, 62
Excursus: Mueller Matrices, 64
2.5 Creation of an Electromagnetic Wave, 65
2.5.1 Equilibrium Radiation and Kirchoff s law, 66
2.5.2 Planck s Blackbody Function and Related Laws, 67
Excursus: Brightness Temperature, 72
2.5.3 Blackbodies and Cavity Radiometers, 73
2.6 Notes and Comments, 76
2.7 Problems, 78
3. Microscopic Interactions—Atomic and
Molecular Absorption, 81
3.1 The Atomic Absorption Spectrum, 81
3.1.1 The Bright Line Spectrum, 81
3.1.2 The Absorption Line Spectrum, 84
3.2 Molecular Absorption Spectra, 85
3.2.1 Molecular Bonding and the Molecular Dipole Moment, 89
3.2.2 Vibration and Rotation Spectra of Simple Diatomic
Molecules: Illustrative Examples, 91
3.2.3 Absorption by Two Triatomic Gases, 95
Excursus: The Infrared Carbon Dioxide Laser, 97
3.3 Line Shapes, 99
3.3.1 Pressure Broadening, 100
Excursus: Vertical Distributions of Chlorine
Monoxide, 104
3.3.2 Doppler Broadening, 107
3.4 Absorption Coefficients and Transmission Functions, 109
3.4.1 The Absorption Coefficient, 109
3.4.2 Transmission Functions, 110
3.5 The Atmospheric Absorption Spectrum, 115
Contents xi
3.5.1 Molecular Oxygen, 116
3.5.2 Ozone, 118
3.5.3 Carbon Dioxide, 119
3.5.4 Water Vapor, 119
Excursus: The Remote Sensing of Surface Pressure, 121
3.6 Passive Spectrometer Systems, 123
3.6.1 Prism Spectrometers, 123
3.6.2 Grating Spectrometers, 125
3.6.3 Interferometer Spectrometers, 128
Excursus: The Resolving Power of an Interferometer, 130
3.7 Notes and Comments, 135
3.8 Problems, 139
4. Macroscopic Interactions—Optical
Properties, 143
4.1 Polarization of Matter, 143
4.2 Classic Theories, 146
4.2.1 The Lorentz Model, 147
4.2.2 Orientational Polarization-Debye Relaxation, 151
4.2.3 Summary, 155
4.3 The Refractive Index, 158
Excursus: The Refractive Index of Air and the Concentra-
tion of Atmospheric Oxygen, 161
4.4 Reflection and Transmission at a Plane Boundary, 163
4.4.1 Propagation in a Homogeneous Slab, 164
4.4.2 Attenuation of Radiation in a Homogeneous Slab, 168
4.5 Selected Applications of Surface Remote Sensing, 170
4.5.1 Monitoring Sea Ice Extent, 170
4.5.2 Measurement of Near-Surface Wind Speed, 173
Excursus: Reñection from Surfaces-Bidirectional
Reflection Functions, 177
Excursus: Spectral Reñectance Properties of Land
Surfaces, 181
4.6 Notes and Comments, 184
4.7 Problems, 185
xü Contents
5. Macroscopic Interactions—Particle
Absorption and Scattering, 190
5.1 A Single Oscillating Dipole: Rayleigh Scatter, 191
Excursus: Haidinger s Brush, 197
5.2 Radiation from Multiple Dipoles, 198
5.2.1 Scattering by Two Isolated Dipoles, 198
Excursus: Phased Array Antennae, 202
5.2.2 The Discrete Dipole Approximation, 205
5.3 Particle Extinction, 208
Excursus: Extinction—It is Black and White, 209
5.3.1 Efficiency Factors and Cross-sectional Areas, 210
5.3.2 Extinction by a Cloud of Many Particles, 212
5.3.3 The Rayleigh Limit and its Application to Cloud Liquid
Water Retrieval, 216
5.3.4 The Large Particle Limit and the Extinction Paradox, 217
Excursus: Ship Tracks, 219
5.4 Scattering Functions, 221
5.4.1 Amplitude Functions, 222
5.4.2 The Scattering Phase Function, 224
Excursus: A Polynomial Representation of the Phase Func-
tion, 226
5.4.3 An Example of the Remote Sensing of Ice Crystal Phase
Functions, 229
5.5 A Simple Diffraction Theory of Particle Extinction, 231
Excursus: Particle Absorption in the ADT
Approximation, 233
5.6 Scattering by Spheres: A Brief Outline of Lorenz Mie
Theory, 235
5.7 Particle Backscattering, 240
5.7.1 Backscattering by Small Spheres, 241
5.7.2 Backscatering by Nonspherical Particles, 243
5.8 Notes and Comments, 249
5.9 Problems, 252
Contents xiii
6. Passive Sensing—Extinction and
Scattering, 261
6.1 Beer s Law and the Remote Sensing of Aerosol, 261
6.1.1 Aerosol Turbidity, 263
6.1.2 Measurement of Turbidity, 264
6.1.3 Retrieval of Particle Size, 266
Excursus: Size Distrìbutions from Anomalous Diffraction
Theory, 270
6.2 More on Extinction-Based Methods, 271
6.2.1 Total Ozone from UV Extinction Measurements, 271
6.2.2 Limb Profiling by Extinction—SAGE, 274
6.3 Scattering as a Source of Radiation, 278
Excursus: Single Scatter Albedo of Water
and Ice Spheres, 282
6.4 Multiple Scattering—A Natural Solution, 286
Excursus: How Many Times does a Photon get
Scattered?, 288
Excursus: Primary Scattering in a Simple Plane Parallel
Atmosphere, 289
6.4.1 An Example: An Atmospheric Correction for NDVI, 291
6.4.2 A Second Example: Aerosol from AVHRR, 292
6.5 The Remote Sensing of Ozone from Scattered UV
Radiation, 294
6.5.1 Reflection from Below: The Principle of Interaction, 298
6.5.2 Total Ozone Algorithms from Backscattered UV, 302
6.5.3 Measured Trends in Total Ozone, 303
6.6 Sensing Clouds by Reflected Sunlight, 304
6.6.1 The Two-Stream Approximation, 306
Excursus: Pollution Susceptible Clouds, 312
6.6.2 Cloud Droplet Radii from Reflected Sunlight, 314
6.6.3 Cloud-top Pressure from Reflected Sunlight, 317
6.7 Notes and Comments, 318
6.8 Problems, 323
Contents
7. Passive Sensing—Emission, 328
7.1 Radiative Transfer with Emission, 329
Excursus: The Angular Properties of Emitted
Radiation, 332
7.2 The Remote Sensing of Sea Surface Temperature, 334
7.3 Examples of Path-Integrated Quantities, 338
7.3.1 Microwave Radiative Transfer, 340
Excursus: Surface-Level Humidity and Heat Fluxes Over
the Ocean, 342
7.3.2 A Microwave Method for Integrated Water Vapor and
Cloud Water, 343
7.4 Passive Sensing of Rainfall, 347
7.4.1 Rainfall Estimates from Outgoing Longwave Radiation
(OLR), 349
7.4.2 Microwave Emission Methods for Sensing Rainfall, 352
7.5 Principles of Sounding by Emission, 356
7.5.1 Weighting Functions for Nadir Sounding, 357
7.5.2 Weighting Functions for Zenith Sounding, 359
7.5.3 Weighting Functions for Limb Sounding, 360
7.5.4 Weighting Functions of an Operational Sounder
System, 364
7.6 Sensing Clouds by Emission: Windows and Arches, 368
Excursus: Golden Arches, 372
7.7 More on Clouds: Slicing up the Atmosphere, 375
7.8 Intensity Classification of Clouds, 378
7.8.1 Emission Classification in the Split Window, 380
7.8.2 The International Satellite Cloud Climatology Project
(ISCCP), 381
7.9 Notes and Comments, 385
7.10 Problems, 390
S. Active Sensing, 395
8.1 Basic Operational Considerations, 398
8.1.1 Range Resolving Systems, 398
8.1.2 Scanning Modes, 400
Contents ֒
8.2 Conventional Weather Radar, 401
8.2.1 The Radar Equation, 403
Excursus: Reflectivities and Precipitation, 408
8.2.2 Radar Attenuation, 410
8.2.3 Area-Time-Integral Methods for Convective Rain, 415
8.3 Multiparameter Radar Measurements of Rainfall, 419
8.3.1 A Dual Wavelength Method, 419
8.3.2 Dual Polarization Method, 421
8.4 General Principles of Lidar Sensing , 426
8.4.1 The Lidar Equation, 427
8.4.2 Inversion of the Lidar Equation:
Backscatter-to-Extinction Ratios, 428
8.4.3 High Spectral Resolution Lidar, 431
8.4.4 Multiple Scattering Effects, 435
8.5 The Differential Absorption Lidar, 436
8.6 Doppler Wind Measurements, 438
Excursus: Beating the Signal—Heterodyne Detection, 439
8.6.1 General Principles of Doppler Wind Measurements, 441
8.6.2 The Doppler Spectrum, 443
8.7 Analyses of Doppler Measurements, 444
8.7.1 Vertical Incidence, 444
8.7.2 Scanning Methods for Single Doppler Systems, 446
8.7.3 PPI Signatures of Horizontally Uniform Winds, 450
8.7.4 Multiple Doppler Systems, 452
8.8 UHF/VHF Radars, 454
8.8.1 Echoing Mechanisms, 455
8.8.2 Wind Measurements, 458
8.8.3 Precipitation Echoes, 458
8.9 Notes and Comments , 458
810 Problems, 461
Appendix 1: Frames of Reference, 466
Al.l Necessary Bookkeeping: Coordinate Systems, 466
A1.2 Scattering Angle, 469
A1.3 Solid Angle and Hemispheric Integrals, 469
xvj Contents
Appendix 2: Class Projects, 471
A2.1 Interferometer Measurements of Atmospheric Emission,
471
A2.1.1 Procedures, 471
A2.1.2 Tasks, 472
A2.1.3 Computing, 473
A2.2 Turbidity at Mauna Loa, 474
A2.2.1 Procedure and Tasks, 474
A2.2.2 Computing, 475
A2.3 Retrieval of Moisture Parameters using SSM/I Data, 476
A2.3.1 Procedure and Tasks, 477
A2.3.2 Data Information, 477
A2.3.3 Computing Comments, 478
A2.4 HIRS Temperature Sounding Project, 479
A2.4.1 Weighting Functions, 479
A2.4.2 Direct Inversion, 481
A2.4.3 Interactive Method of Inversion, 482
A2.4.4 Questions, 483
A2.4.5 Computing Comments, 484
A2.4.6 Additional References, 484
A2.5 Doppler Velocity Project, 484
A2.5.1 Procedures, 484
A2.5.2 Tasks, 485
References, 486
Subject Index, 513
|
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spelling | Stephens, Graeme L. Verfasser aut Remote sensing of the lower atmosphere an introduction Graeme L. Stephens New York u.a. Oxford Univ. Press 1994 XVI, 523 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier ATMOSFERA larpcal Atmosphère - Télédétection ram METEOROLOGIA larpcal Ondes électromagnétiques - Télédétection ram Physique de l'atmosphère - Télédétection ram RADIAÇÃO ATMOSFÉRICA larpcal Rayonnement atmosphérique - Télédétection ram SENSORIAMENTO REMOTO GEOLOGICO larpcal SENSORIAMENTO REMOTO larpcal Atmosphere Remote sensing Atmospheric physics Remote sensing Atmospheric radiation Remote sensing Electromagnetic waves Remote sensing Fernerkundung (DE-588)4016796-3 gnd rswk-swf Atmosphäre (DE-588)4003397-1 gnd rswk-swf Atmosphäre (DE-588)4003397-1 s Fernerkundung (DE-588)4016796-3 s DE-604 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006509583&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Stephens, Graeme L. Remote sensing of the lower atmosphere an introduction ATMOSFERA larpcal Atmosphère - Télédétection ram METEOROLOGIA larpcal Ondes électromagnétiques - Télédétection ram Physique de l'atmosphère - Télédétection ram RADIAÇÃO ATMOSFÉRICA larpcal Rayonnement atmosphérique - Télédétection ram SENSORIAMENTO REMOTO GEOLOGICO larpcal SENSORIAMENTO REMOTO larpcal Atmosphere Remote sensing Atmospheric physics Remote sensing Atmospheric radiation Remote sensing Electromagnetic waves Remote sensing Fernerkundung (DE-588)4016796-3 gnd Atmosphäre (DE-588)4003397-1 gnd |
subject_GND | (DE-588)4016796-3 (DE-588)4003397-1 |
title | Remote sensing of the lower atmosphere an introduction |
title_auth | Remote sensing of the lower atmosphere an introduction |
title_exact_search | Remote sensing of the lower atmosphere an introduction |
title_full | Remote sensing of the lower atmosphere an introduction Graeme L. Stephens |
title_fullStr | Remote sensing of the lower atmosphere an introduction Graeme L. Stephens |
title_full_unstemmed | Remote sensing of the lower atmosphere an introduction Graeme L. Stephens |
title_short | Remote sensing of the lower atmosphere |
title_sort | remote sensing of the lower atmosphere an introduction |
title_sub | an introduction |
topic | ATMOSFERA larpcal Atmosphère - Télédétection ram METEOROLOGIA larpcal Ondes électromagnétiques - Télédétection ram Physique de l'atmosphère - Télédétection ram RADIAÇÃO ATMOSFÉRICA larpcal Rayonnement atmosphérique - Télédétection ram SENSORIAMENTO REMOTO GEOLOGICO larpcal SENSORIAMENTO REMOTO larpcal Atmosphere Remote sensing Atmospheric physics Remote sensing Atmospheric radiation Remote sensing Electromagnetic waves Remote sensing Fernerkundung (DE-588)4016796-3 gnd Atmosphäre (DE-588)4003397-1 gnd |
topic_facet | ATMOSFERA Atmosphère - Télédétection METEOROLOGIA Ondes électromagnétiques - Télédétection Physique de l'atmosphère - Télédétection RADIAÇÃO ATMOSFÉRICA Rayonnement atmosphérique - Télédétection SENSORIAMENTO REMOTO GEOLOGICO SENSORIAMENTO REMOTO Atmosphere Remote sensing Atmospheric physics Remote sensing Atmospheric radiation Remote sensing Electromagnetic waves Remote sensing Fernerkundung Atmosphäre |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=006509583&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT stephensgraemel remotesensingoftheloweratmosphereanintroduction |