Soil physics:
Gespeichert in:
Hauptverfasser: | , , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York [u.a.]
Wiley
1991
|
Ausgabe: | 5. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XV, 328 S. Ill., graph. Darst. |
ISBN: | 0471831085 |
Internformat
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100 | 1 | |a Jury, William A. |e Verfasser |4 aut | |
245 | 1 | 0 | |a Soil physics |c William A. Jury ; Wilford R. Gardner ; Walter H. Gardner |
250 | |a 5. ed. | ||
264 | 1 | |a New York [u.a.] |b Wiley |c 1991 | |
300 | |a XV, 328 S. |b Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
650 | 4 | |a Sols - Physique | |
650 | 7 | |a Sols - Physique |2 ram | |
650 | 4 | |a Soil physics | |
650 | 0 | 7 | |a Physikochemische Bodeneigenschaft |0 (DE-588)4311151-8 |2 gnd |9 rswk-swf |
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700 | 1 | |a Gardner, Wilford R. |e Verfasser |4 aut | |
700 | 1 | |a Gardner, Walter H. |e Verfasser |4 aut | |
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Datensatz im Suchindex
_version_ | 1804122656319995904 |
---|---|
adam_text | CONTENTS
1 The Soil Solid Phase
1.1 Characteristics of the Primary Particles 1
1.1.1 Characterization of Particle Size 2
1.1.2 Classification of Textural Size Fractions 3
1.1.3 Chemical and Mineralogical Properties 5
Sand and Silt Fraction 5
Clay Fraction 6
1.1.4 Shape of Soil Particles 13
1.1.5 Surface Area of Soil Particles 15
Relationship to Particle Size 15
Relationship to Clay Mineralogy 16
1.1.6 Surface Properties of Clay Particles 18
Density of Charge 18
Ionic Adsorption 19
Cation Adsorption 19
Diffuse Double Layer 20
Cation Exchange Equations 23
Anion Adsorption 24
Adsorption of Nonelectrolytes 24
Ion Adsorption and Flocculation 25
Adsorption Isotherms 25
Adsorption of Gases 26
Measurement of Specific Surface Area 28
Measurement of Cation Exchange Capacity 29
1.2 Characteristics of Bulk Soil 29
1.2.1 Volume Fractions 29
1.2.2 Bulk and Mineral Densities 29
Measurement of Bulk Density 30
1.2.3 Soil Structure 30
Aggregation 31
Aggregate Analysis 31
Stability of Structure 32
Problems 32
ix
X CONTENTS
2 Water Retention in Soil 34
2.1 Properties of Water 34
2.1.1 Molecular Properties of Water 34
2.1.2 Fluid Properties of Water 37
Thermal and Mechanical Properties 37
Surface Tension and Interfacial Curvature 37
Contact Angle 40
Capillary Rise 40
Viscosity 42
Osmotic Pressure 42
2.1.3 Water Near Particle Surfaces 43
2.2 Soil Water Content 45
2.2.1 Definitions 45
2.2.2 Measurement of Soil Water Content 45
Measurement of dg 45
Measurement of 0v by Mass and Volume
Estimation 45
Measurement of 0v by Gamma Ray Attenuation 46
Measurement of 6V by Neutron Attenuation 46
Measurement of Bv by Time Domain Reflectometry 47
2.3 Energy State of Water in Soil 48
2.3.1 Potential Energy of Water in Soil 48
2.3.2 Reference or Standard State 49
2.3.3 Total Soil Water Potential 49
2.3.4 Components of Water Potential 50
Gravitational Potential 50
Solute Potential 50
Tensiometer Pressure Potential 50
Matric Potential 51
Air Pressure Potential 51
Hydrostatic Pressure Potential 51
Overburden Pressure Potential 52
Wetness Potential 52
2.4 Analysis of Systems at Equilibrium 52
2.5 Measurements of Components of Water Potential 56
2.5.1 Direct Measurement of Potential Components 56
2.5.2 Measurement Devices 56
Piezometer Tube 56
Tensiometer 57
Soil Psychrometer 60
2.6 Water Characteristic Function 61
2.6.1 Measurement 61
Hanging Water Column 61
CONTENTS xi
Pressure Plate 62
Equilibration over Salt Solutions 63
2.6.2 Hysteresis in Water Content-Energy Relationships 65
2.7 Appendix: Gamma Ray Attenuation 68
2.7.1 Transmission through a Pure Substance i 68
2.7.2 Transmission through a Heterogeneous Material 69
2.7.3 Transmission through Soil 69
Problems 70
3 Water Movement in Soil 73
3.1 Water Flow in Capillary Tubes 73
3.1.1 Poiseuille s Law 75
3.2 Water Flow in Saturated Soil 77
3.2.1 Darcy s Law 77
3.2.2 Measurement of Saturated Hydraulic Conductivity 80
3.2.3 Calculation of Hydrostatic Pressure in Soil
Columns 82
3.2.4 Water Flow in Saturated Layered Soil 83
3.3 Water Flow in Unsaturated Soil 87
3.3.1 Buckingham-Darcy Flux Law 87
3.3.2 Unsaturated Hydraulic Conductivity 88
3.3.3 Capillary Tube Model of Unsaturated Hydraulic
Conductivity 89
3.3.4 Steady-State Water Flow Problems 94
Integral Form of Darcy s Law 95
Evaporation from a Water Table 95
Steady-State Downward Water Flow 99
Measurement of Unsaturated Hydraulic
Conductivity 100
3.3.5 Water Conservation Equation 102
3.3.6 Richards Equation for Transient Water Flow 105
Water Content Form of Richards Equation 105
Matric Potential Form of Richards Equation 107
Water Diffusivity Function D„.(0) 107
Water Capacity Function C„,(0) 107
3.3.7 Model Functional Forms 107
3.3.8 Water Flow Calculations in Unsaturated Soil 109
Steady-State Water Flow through a Crop Root
Zone 109
Water Flow through Unsaturated Layered Soil 110
3.4 Multidimensional Flow 112
3.5 Appendix: Solution of First-Order Ordinary Differential
Equations 114
XÜ CONTENTS
3.5.1 Method 1 : Separation of Variables 114
3.5.2 Method 2: Integrating Factors 116
Problems 117
4 The Field Soil Water Regime 122
4.1 Field Water Balance 122
4.1.1 Analysis of Field Water Content and Matric Potential
Profiles 123
4.1.2 Equilibrium and Steady-State Profiles 125
4.1.3 Transient Flow Processes in the Field 128
4.2 Infiltration 128
4.2.1 Empirical Infiltration Models 130
Kostiakov Equation 130
Horton Equation 130
4.2.2 Green-Ampt Infiltration Model 131
4.2.3 Philip Infiltration Model 134
Horizontal Infiltration 134
Vertical Infiltration 134
4.2.4 Infiltration into Nonhomogeneous Soil Profiles 138
4.2.5 Infiltration When Rainfall Is Limiting 141
4.2.6 Two- and Three-Dimensional Infiltration 142
4.3 Redistribution 144
4.3.1 Redistribution of Water in Soil Profiles 144
4.3.2 Field Capacity Concept 150
4.4 Field Measurement of Unsaturated Hydraulic Conductivity 151
4.5 Water Flow through Structural Voids 153
4.6 Evaporation 153
Problems 156
5 The Soil Thermal Regime 159
5.1 Atmospheric Energy Balance 159
5.1.1 Extraterrestrial Radiation 159
Stefan-Boltzmann Law 159
Energy-Wavelength Laws 160
5.1.2 Solar Radiation 161
Interactions with Atmosphere 161
Net Radiation 161
5.1.3 Physical Factors Affecting Solar Radiation 164
Albedo 164
Latitude 165
Exposure 167
Distribution of Land and Water 168
Vegetation 168
CONTENTS xiii
5.2 Soil Surface Energy Balance 169
5.2.1 Energy Balance Equation 169
Components of Energy Balance 169
5.2.2 Measurement of Evapotranspiration 171
Aerodynamic Transport Equations 171
Penman Combination Equation 172
5.3 Heat Flow in Soil 173
5.3.1 Heat Flux Equation 173
5.3.2 Heat Conservation Equation 176
5.3.3 Thermal Properties of Soil 178
Heat Capacity 178
Thermal Conductivity 180
Measurement of Thermal Conductivity 183
5.3.4 Applications of Heat Flow Equation 184
Steady-State Heat Flow Problems 184
Annual Temperature Changes in Soil 185
5.3.5 Soil Temperature Observations 189
Diurnal Variations 189
Annual Variations 190
Problems 192
6 Soil Aeration 196
6.1 Composition of Soil Air 196
6.2 Gas Reactions In Soil 197
6.2.1 CO2 Production in Soil 197
6.2.2 O2 Consumption in Soil 197
6.3 Gas Transport through Soil 199
6.3.1 Gas Conservation Equation 199
6.3.2 Gas Convection in Soil 201
Temperature Effects 201
Barometric Pressure Effects 201
Wind Effects 202
Rainfall Effects 202
Mass Flow of Gases into Buildings 202
6.3.3 Gas Diffusion 203
Measurement of Gas Diffusion Coefficients in Soil 205
Measurement of Gas Flux in Field 205
6.3.4 Gas Transport Equation 205
6.4 Gas Transport Modeling in Soil 205
6.4.1 Steady-State O2 Transport and Consumption 206
6.4.2 Steady-State and Transient CO2 Transport and
Evolution 208
6.4.3 O2 Depletion at the Plant Root Interface 210
6.5 Flow of Water Vapor through Soil 211
xiv CONTENTS
6.5.1 Water Vapor Flux Equation 211
6.5.2 Approximate Water Vapor Flux Law 213
6.6 Measurement of O2 Diffusion and Consumption in Soil 214
Problems 216
7 Solute Transport in Soil 218
7.1 Solute Conservation Equation 218
7.1.1 Solute Storage in Soil 219
7.1.2 Solute Flux through Soil 220
7.1.3 Convection-Dispersion Model of Hydrodynamic
Dispersion 221
7.2 Convection-Dispersion Equation 222
7.2.1 Transport of Inert, Nonadsorbing Solutes 223
Breakthrough Time 223
Effect of Dispersion 223
Drainage Breakthrough Curves 223
Transport of Pulses through Soil 225
7.2.2 Transport of Inert, Adsorbing Chemicals 225
Adsorption Isotherms 226
Breakthrough Time 227
Effect of Dispersion 227
7.2.3 Effect of Soil Structure on Transport 228
Mobile-Immobile Water Model 230
7.2.4 Reactions of Chemicals in Soil 232
First-Order Decay 232
Convection-Dispersion Equation and First-Order
Decay 233
Piston Flow Model and First-Order Decay 233
7.2.5 Transport of Volatile Organic Compounds through
Soil 234
Phase Partitioning Laws 234
Linear Partitioning Laws 235
Effective Liquid-Vapor Diffusion 237
Total Solute Flux 238
Volatilization of Chemicals from Soil 239
7.3 Transfer Function Model of Solute Transport through Soil 243
7.3.1 Solute Transport Volume 244
7.3.2 Solute Lifetime and Travel Time Distribution
Functions 245
7.3.3 Transfer Function Equation 245
7.3.4 Measurement of Transfer Function Parameters 246
7.3.5 Model Distribution Functions 247
7.3.6 Stochastic-Convective Transfer Function Model 248
Convective Lognormal Transfer Function Model 249
CONTENTS xv
7.3.7 Model Parameter Estimates 251
Method of Moments 251
7.3.8 Application to Experimental Studies 253
7.4 Solute Management in Field Soil 255
7.4.1 Salinization of Crop Root Zones 255
Leaching Fraction 255
Solution Chemistry and Transport 257
7.4.2 Groundwater Contamination 259
Nitrate Pollution 259
Industrial Chemicals 262
Pesticide Pollution of Groundwater 263
Problems 264
8 Methods for Analyzing Spatial Variations of Soil Properties 268
8.1 Variability of Soil Physical Properties 268
8.2 Concepts of Probability 271
8.2.1 Random and Regional Variables 271
8.2.2 Frequency Distributions 272
Cumulative Distribution Function 272
Probability Density Function 272
Moments of the pdf 274
Joint Distributions 275
Random Functions of a Parameter 276
8.3 Analysis of Frequency Distributions 278
8.3.1 Model Probability Density Functions 278
Normal Distribution 278
Lognormal Distribution 280
Mode and Median 282
8.3.2 Methods for Determining Frequency Distribution 283
Fractile Diagram 283
Kolmogorov-Smimov Statistic 285
8.3.3 Confidence Limits for the Mean 285
Nonnormal Populations 286
8.4 Analysis of Spatial Structure 286
8.4.1 TheVariogram 286
Estimation of 7(h) 287
8.4.2 The Autocorrelation Function 288
Model Variogram Functions 289
8.4.3 Kriging 290
8.4.4 Drift 290
Problems 291
List of Symbols 294
References 300
Index 319
|
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author | Jury, William A. Gardner, Wilford R. Gardner, Walter H. |
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building | Verbundindex |
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callnumber-first | S - Agriculture |
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callnumber-search | S592.3 |
callnumber-sort | S 3592.3 |
callnumber-subject | S - General Agriculture |
classification_rvk | RB 10159 RB 10160 |
classification_tum | LAN 117f GEO 323f GEO 315f |
ctrlnum | (OCoLC)22810745 (DE-599)BVBBV008262501 |
dewey-full | 631.4/3 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 631 - Techniques, equipment & materials |
dewey-raw | 631.4/3 |
dewey-search | 631.4/3 |
dewey-sort | 3631.4 13 |
dewey-tens | 630 - Agriculture and related technologies |
discipline | Geowissenschaften Agrarwissenschaft Agrar-/Forst-/Ernährungs-/Haushaltswissenschaft / Gartenbau Pflanzenbau Geographie |
edition | 5. ed. |
format | Book |
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id | DE-604.BV008262501 |
illustrated | Illustrated |
indexdate | 2024-07-09T17:17:20Z |
institution | BVB |
isbn | 0471831085 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-005457178 |
oclc_num | 22810745 |
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owner | DE-703 DE-1029 DE-M49 DE-BY-TUM DE-83 DE-11 |
owner_facet | DE-703 DE-1029 DE-M49 DE-BY-TUM DE-83 DE-11 |
physical | XV, 328 S. Ill., graph. Darst. |
publishDate | 1991 |
publishDateSearch | 1991 |
publishDateSort | 1991 |
publisher | Wiley |
record_format | marc |
spelling | Jury, William A. Verfasser aut Soil physics William A. Jury ; Wilford R. Gardner ; Walter H. Gardner 5. ed. New York [u.a.] Wiley 1991 XV, 328 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Sols - Physique Sols - Physique ram Soil physics Physikochemische Bodeneigenschaft (DE-588)4311151-8 gnd rswk-swf Bodenmechanik (DE-588)4007385-3 gnd rswk-swf Bodenphysik (DE-588)4432839-4 gnd rswk-swf Bodenphysik (DE-588)4432839-4 s Bodenmechanik (DE-588)4007385-3 s 1\p DE-604 Physikochemische Bodeneigenschaft (DE-588)4311151-8 s 2\p DE-604 Gardner, Wilford R. Verfasser aut Gardner, Walter H. Verfasser aut HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=005457178&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 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Jury, William A. Gardner, Wilford R. Gardner, Walter H. Soil physics Sols - Physique Sols - Physique ram Soil physics Physikochemische Bodeneigenschaft (DE-588)4311151-8 gnd Bodenmechanik (DE-588)4007385-3 gnd Bodenphysik (DE-588)4432839-4 gnd |
subject_GND | (DE-588)4311151-8 (DE-588)4007385-3 (DE-588)4432839-4 |
title | Soil physics |
title_auth | Soil physics |
title_exact_search | Soil physics |
title_full | Soil physics William A. Jury ; Wilford R. Gardner ; Walter H. Gardner |
title_fullStr | Soil physics William A. Jury ; Wilford R. Gardner ; Walter H. Gardner |
title_full_unstemmed | Soil physics William A. Jury ; Wilford R. Gardner ; Walter H. Gardner |
title_short | Soil physics |
title_sort | soil physics |
topic | Sols - Physique Sols - Physique ram Soil physics Physikochemische Bodeneigenschaft (DE-588)4311151-8 gnd Bodenmechanik (DE-588)4007385-3 gnd Bodenphysik (DE-588)4432839-4 gnd |
topic_facet | Sols - Physique Soil physics Physikochemische Bodeneigenschaft Bodenmechanik Bodenphysik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=005457178&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT jurywilliama soilphysics AT gardnerwilfordr soilphysics AT gardnerwalterh soilphysics |