Vadose zone processes:
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton [u.a.]
Lewis
1999
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 339 S. Ill., graph. Darst. |
ISBN: | 0873719530 |
Internformat
MARC
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100 | 1 | |a Selker, John S. |e Verfasser |4 aut | |
245 | 1 | 0 | |a Vadose zone processes |c John S. Selker ; C. Kent Keller ; James T. McCord |
264 | 1 | |a Boca Raton [u.a.] |b Lewis |c 1999 | |
300 | |a 339 S. Ill., graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
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700 | 1 | |a Keller, C. Kent |e Verfasser |4 aut | |
700 | 1 | |a MacCord, James T. |e Verfasser |4 aut | |
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999 | |a oai:aleph.bib-bvb.de:BVB01-008745182 |
Datensatz im Suchindex
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adam_text | VADOSE ZONE PROCESSES JOHN S. SELKER C. KENT KELLER JAMES T. MCCORD
LEWIS PUBLISHERS BOCA RATON LONDON NEW YORK WASHINGTON, D.C. CONTENTS
RELATED TEXTS (OR, ARE YOU SURE THIS IS THE RIGHT BOOK FOR YOU?) 1
CHAPTER 1 AN INTRODUCTION TO THE VADOSE ZONE 1.1 GENERAL 3 1.2 HISTORY
OF INVESTIGATION 4 1.3 RELATIONSHIP TO SATURATED MEDIA 6 1.4
CONTEMPORARY CONCERNS WITH THE VADOSE ZONE 6 1.5 A PRIMER ON SOILS 7
1.5.1 COMPONENTS OF SOILS 7 1.5.2 SOIL CLASSIFICATION 9 1.5.2.1
CLASSIFICATION OF HORIZONS AND LAYERS 10 1.5.2.2 CLASSIFICATION OF
COLOR, STRUCTURE, AND TEXTURE 12 1.5.3 THE HIGH POINTS OF CLAY
MINERALOGY 14 REVIEW QUESTIONS 18 PROBLEMS 19 CHAPTER 2 PHYSICAL AND
HYDRAULIC PROPERTIES OF VARIABLY SATURATED MEDIA 2.1 WHERE WE ARE GOING
21 2.2 DEFINITIONS 21 2.3 HYDROSTATICS IN POROUS MEDIA 29 2.3.1 SURFACE
TENSION 30 2.3.1.1 CLASSICAL DERIVATION OF LAPLACE S EQUATION 31 2.3.1.2
INTRODUCTION TO THE THERMODYNAMICS OF FLUID INTERFACES 34 2.3.1.2.1 THE
THERMODYNAMICS OF FLAT INTERFACES 34 2.3.1.2.2 LAPLACE S EQUATION FOR A
DROPLET IN SPACE 35 2.3.1.2.3 VAPOR PRESSURE ACROSS CURVED INTERFACES 36
2.3.1.2.4 TEMPERATURE DEPENDENCE OF SURFACE TENSION 38 2.3.2 THE
CHARACTERISTIC CURVES 38 2.3.2.1 CONTACT ANGLE, SOURCES AND EFFECTS 44
2.3.2.2 THE INDEPENDENT DOMAIN MODEL OF HYSTERESIS 48 2.4 HYDRODYNAMICS
IN POROUS MEDIA 57 2.4.1 DARCY S LAW FOR SATURATED MEDIA 57 2.4.2
DARCY S LAW AT REYNOLDS NUMBER GREATER THAN 1 62 2.4.3 EXTENDING DARCY S
LAW TO UNSATURATED MEDIA 67 2.4.4 GAS FLOW IN POROUS MEDIA 69 2.5 ADDING
THE CONSERVATION OF MASS: THE RICHARDS EQUATION 70 2.6 EXPRESSIONS FOR
CONDUCTIVITY AND RETENTION 73 2.7 MILLER SIMILARITY AND SCALING OF
CAPILLARY PROPERTIES 75 2.8 NONAQUEOUS FLUIDS IN THE VADOSE 83 2.8.1 THE
ANATOMY OF AN NAPL SPILL 85 2.8.2 OBSERVING LNAPLS IN WELLS 86 2.8.3
MOVEMENT AND RETENTION OF NAPLS 88 2.9 METHODS OF MEDIA CHARACTERIZATION
90 2.9.1 MEASUREMENT OF PORE WATER POTENTIAL 90 2.9.2 MEASUREMENT OF
WATER CONTENT 92 2.9.3 MEASUREMENT OF HYDRAULIC CONDUCTIVITY 96 REVIEW
QUESTIONS 102 PROBLEMS 103 CHAPTER 3 FLOW OF WATER IN THE VADOSE ZONE
3.1 THE CLASSIC SOLUTIONS FOR INFILTRATION AND EVAPORATION ILL 3.1.1 THE
GREEN AND AMPT MODEL ILL 3.1.1.1 DETERMINATION OF GREEN AND AMPT
PARAMETERS 116 3.1.2 SOLUTIONS USING THE RICHARDS EQUATION 117 3.1.2.1
THE BRUCE AND KLUTE EQUATION FOR HORIZONTAL INFILTRATION 117 3.1.2.2
STEADY-STATE EVAPORATION FROM A WATER TABLE 122 3.2 RECENT ADVANCES 126
3.2.1 SOLUTIONS FOR CAPILLARY BARRIERS 126 3.2.2 PREFERENTIAL FLOW
PROCESSES 139 3.3 SOLUTION SAMPLING AND FLUX MEASUREMENT 141 REVIEW
QUESTIONS 143 PROBLEMS 143 CHAPTER 4 VADOSE BIOGEOCHEMICAL PROCESSES 4.1
INTRODUCTION 147 4.2 GEOCHEMICAL FUNDAMENTALS 149 4.2.1 KINETICS 149
4.2.2 EQUILIBRIUM 150 4.2.2.1 EQUILIBRIUM BETWEEN PURE SUBSTANCES;
STANDARD STATES 151 4.2.2.2 THE EQUILIBRIUM CONSTANT 153 4.2.3 ACTIVITY
CONVENTIONS 155 4.2.3.1 HENRY S LAW 156 4.2.4 TEMPERATURE AND PRESSURE
DEPENDENCE OF EQUILIBRIA 157 4.2.5 MINERAL EQUILIBRIA AND SPECIATION 159
4.2.5.1 ACTIVITY COEFFICIENTS 161 4.2.5.2 COMPLEXES 162 4.2.5.3
COMPUTING DISTRIBUTION OF SPECIES ( SPECIATION ) 163 4.3 BIOLOGICAL
PROCESSES 165 4.3.1 OVERVIEW 165 4.3.2 VADOSE GEOMICROBIOLOGY 166 4.3.3
VADOSE BACTERIAL ACTIVITY AND CO 2 GENERATION 167 4.3.3.1 LABORATORY
MEASUREMENTS 169 4.3.3.2 FIELD MEASUREMENTS 169 4.3.3.3 CO 2 PRODUCTION
DISTRIBUTIONS 170 4.3.4 CO 2 , ACID, AND PH 176 4.4 ACID CONSUMPTION AND
FLUID-ROCK INTERACTION 178 4.4.1 CARBONATE MINERALS AND TERRANES 178
4.4.1.1 THE CARBONATE SYSTEM 178 4.4.2 SILICATE MINERALS AND TERRANES
181 4.4.2.1 SILICATE WEATHERING 182 4.4.2.2 WEATHERING PROGRESS CONCEPTS
185 4.4.2.3 CALICHE 187 4.4.3 EVAPORITES AND EVAPORATION 188 4.4.3.1
GYPSUM 189 A A3.2 EVAPORATIVE CONCENTRATION 190 4.4.4 VADOSE
HYDROCHEMICAL EVOLUTION 191 4.5 SORPTIVE PROCESSES 194 4.5.1 ADSORPTION
194 4.5.2 THE DIFFUSE DOUBLE LAYER 195 4.5.2.1 DIFFUSE LAYER THEORY 196
4.5.2.2 ION EXCLUSION 198 4.5.3 CATION EXCHANGE REACTIONS 199 4.5.3.1
SELECTIVITY COEFFICIENT 199 4.5.3.2 EXCHANGER EVOLUTION 201 4.5.3.3
SALINE SOILS 202 4.5.4 SORPTION ISOTHERMS 203 4.5.4.1 ADSORPTION MODELS
204 4.5.5 SORPTION OF ORGANICS 205 4.5.5.1 NONEQUILIBRIUM SORPTION 208
4.5.6 RETARDATION 208 4.6 SUMMARY: CONTROLS ON VADOSE SOLUTE OCCURRENCE
209 4.7 REACTION SIMULATIONS 211 4.8 GEOCHEMICAL INDICATORS OF VADOSE
FLOW PROCESSES 212 4.8.1 MASS BALANCES ON CONSERVATIVE SOLUTES 212 4.8.2
MASS BALANCES ON EVAPORATING SPECIES 218 4.8.3. BOMB PULSE METHODS 220
4.8.4. MASS BALANCES ON DISSOLVING SOLIDS 221 4.8.5. MASS BALANCES ON
EXCHANGING SOLIDS 223 REVIEW QUESTIONS 224 PROBLEMS 225 CHAPTER 5 SOLUTE
TRANSPORT IN THE VADOSE ZONE 5.1 FLUX AND RESIDENT CONCENTRATION 231 5.2
PLUG FLOW MODELS 232 5.3 ADVECTIVE-DISPERSION EQUATION 234 5.3.1 SCOPE
OF APPLICATION 234 5.3.2 DERIVATION OF THE ADVECTIVE-DISPERSION EQUATION
234 5.3.2.1 SOLUTE MASS CONSERVATION EQUATION 234 5.3.2.2 FLUX TERM, J
236 5.3.2.2.1 ADVECTIVE TRANSPORT 236 5.3.2.2.3 MACROSCOPIC PHENOMENA
237 5.3.2.3 DISPERSION COEFFICIENTS 240 5.3.2.4 CHEMICAL REACTIONS,
SOLUTE DECAY, AND ADSORPTION 242 5.3.2.5 RELATIONSHIP BETWEEN RESIDENT
AND FLUX CONCENTRATIONS FORTHEADE 245 5.3.2.6 SOLUTIONS OF THE ADE 246
5.3.2.6.1 INSTANTANEOUS POINT INJECTION IN ONE-DIMENSIONAL INFINITE
COLUMN 246 5.3.2.6.2 CONTINUOUS POINT INJECTION IN ONE DIMENSION 249
5.3.2.6.3 POINT SOURCES IN TWO AND THREE DIMENSIONS 251 5.4 SOURCES AND
MODELS FOR NONIDEAL TRANSPORT 252 5.4.1 THE VARIOUS NONIDEAL FLOW
PROCESSES 252 5.4.2 RETARDATION REVISITED: INCORPORATING GEOCHEMISTRY
252 5.4.3 THE MOBILE-IMMOBILE CONCEPTUAL MODEL 254 5.5 TRANSFER FUNCTION
MODELING 254 5.6 LABORATORY AND FIELD METHODS TO MEASURE TRANSPORT
PARAMETERS 256 REVIEW QUESTIONS 257 PROBLEMS 258 CHAPTER 6 FLOW AND
TRANSPORT IN THE HETEROGENEOUS VADOSE ZONE 6.1 CHARACTERIZING
HETEROGENEITY 260 6.1.1 A PRIMER/REVIEW OF PROBABILITY AND STATISTICS
260 6.1.1.1 UNIVARIATE STATISTICAL ESTIMATORS 260 6.1.1.2 UNIVARIATE
FREQUENCY AND PROBABILITY DISTRIBUTIONS 262 6.1.1.3 UNIVARIATE
PROBABILITY THEORY: PROBABILITY DENSITY FUNCTIONS 264 6.1.1.4 PROPERTIES
OF PROBABILITY DENSITY FUNCTIONS 265 6.1.1.5 MOMENT MEASURES OF
PROBABILITY DISTRIBUTIONS 266 6.1.1.6 SOME COMMON DISTRIBUTIONS 267
6.1.2 APPLICATION OF PROBABILITY AND STATISTICAL CONCEPTS TO A SPATIALLY
VARIABLE DATA SET 269 6.1.3 CORRELATED SPATIAL VARIABILITY: MULTIVARIATE
GAUSSIAN GEOSTATISTICS 269 6.1.3.1 AUTO- AND CROSS-CORRELATION 273
6.1.3.2 SPATIAL CORRELATION 273 6.1.3.3 ANALYTICAL COVARIANCE MODELS 276
6.1.3.4 VARIOGRAMS 277 6.1.4 RANDOM FIELD ESTIMATION: KRIGING AND RANDOM
FIELD SIMULATION 278 6.1.4.1 KRIGING 278 6.1.4.2 RANDOM FIELD SIMULATION
280 6.1.5 NON-PARAMETRIC GEOSTATISTICS 282 6.1.6 SUMMARY ON
GEOSTATISTICAL CHARACTERIZATION OF HETEROGENEOUS GEOLOGIC DEPOSITS 283
6.2 PREDICTING FLOW AND TRANSPORT IN HETEROGENEOUS MEDIA 283 6.2.1
DETERMINISTIC APPROACH 284 6.2.2 STOCHASTIC FLOW APPROACH 286 6.2.2.1
STOCHASTIC EFFECTIVE FLOW MODELING 286 6.2.2.2 STOCHASTIC HETEROGENEOUS
FLOW MODELING 293 6.2.3 STOCHASTIC TRANSPORT MODELING 293 6.2.3.1
STOCHASTIC EFFECTIVE TRANSPORT MODELING 295 6.2.3.2 STOCHASTIC
HETEROGENEOUS TRANSPORT MODELING 299 6.3 SUMMARY ON APPROACHES TO STUDY
FLOW AND TRANSPORT IN HETEROGENEOUS VADOSE ZONES 299 APPENDIX I:
THERMODYNAMIC FUNDAMENTALS 301 REFERENCES 311 INDEX 329
|
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author | Selker, John S. Keller, C. Kent MacCord, James T. |
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indexdate | 2024-07-09T18:34:50Z |
institution | BVB |
isbn | 0873719530 |
language | English |
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physical | 339 S. Ill., graph. Darst. |
publishDate | 1999 |
publishDateSearch | 1999 |
publishDateSort | 1999 |
publisher | Lewis |
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spelling | Selker, John S. Verfasser aut Vadose zone processes John S. Selker ; C. Kent Keller ; James T. McCord Boca Raton [u.a.] Lewis 1999 339 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Flujo de Aguas Subterráneas Groundwater flow Zone of aeration Grundwasserstrom (DE-588)4121396-8 gnd rswk-swf Vadoses Wasser (DE-588)4224794-9 gnd rswk-swf Vadoses Wasser (DE-588)4224794-9 s Grundwasserstrom (DE-588)4121396-8 s DE-604 Keller, C. Kent Verfasser aut MacCord, James T. Verfasser aut GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008745182&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Selker, John S. Keller, C. Kent MacCord, James T. Vadose zone processes Flujo de Aguas Subterráneas Groundwater flow Zone of aeration Grundwasserstrom (DE-588)4121396-8 gnd Vadoses Wasser (DE-588)4224794-9 gnd |
subject_GND | (DE-588)4121396-8 (DE-588)4224794-9 |
title | Vadose zone processes |
title_auth | Vadose zone processes |
title_exact_search | Vadose zone processes |
title_full | Vadose zone processes John S. Selker ; C. Kent Keller ; James T. McCord |
title_fullStr | Vadose zone processes John S. Selker ; C. Kent Keller ; James T. McCord |
title_full_unstemmed | Vadose zone processes John S. Selker ; C. Kent Keller ; James T. McCord |
title_short | Vadose zone processes |
title_sort | vadose zone processes |
topic | Flujo de Aguas Subterráneas Groundwater flow Zone of aeration Grundwasserstrom (DE-588)4121396-8 gnd Vadoses Wasser (DE-588)4224794-9 gnd |
topic_facet | Flujo de Aguas Subterráneas Groundwater flow Zone of aeration Grundwasserstrom Vadoses Wasser |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=008745182&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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