Groundwater science:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Amsterdam [u.a.]
Elsevier, AP
2013
|
Ausgabe: | 2. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIX, 672 S. Ill., graph. Darst., Kt. |
ISBN: | 9780123847058 |
Internformat
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245 | 1 | 0 | |a Groundwater science |c Charles R. Fitts |
250 | |a 2. ed. | ||
264 | 1 | |a Amsterdam [u.a.] |b Elsevier, AP |c 2013 | |
300 | |a XIX, 672 S. |b Ill., graph. Darst., Kt. | ||
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Datensatz im Suchindex
_version_ | 1804149459695697920 |
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adam_text | Contents
PREFACE
.............................. xvii
CHAPTER
1
Groundwater: The Big Picture
........... 1
1.1
Introduction
.................... 1
1.2
Global Water Reservoirs and Fluxes
......... 4
1.3
Terminology for Subsurface Waters
......... 7
1.4
Fluxes Affecting Groundwater
............ 8
1.4.1
Infiltration and Recharge
.......... 9
1.4.2
Evapotranspiration
............. 10
1.4.3
Groundwater Discharge to Surface Water
Bodies
................... 12
1.4.4
Pumping
.................. 13
1.5
Hydrologie
Balance
................. 13
1.6
Water and Groundwater Use
............ 16
1.7
What Groundwater Scientists Do
.......... 18
1.8
Problems
...................... 19
CHAPTER! Physical Properties
................. 23
2.1
Introduction
.................... 23
2.2
Properties of Water
................. 23
2.2.1
Density and Compressibility
........ 24
2.2.2
Viscosity
.................. 26
2.2.3
Surface Tension and Capillarity
....... 27
2.3
Properties of Air
.................. 28
2.4
Properties of Porous Media
............. 29
2.4.1
Porosity
.................. 29
2.4.2
Grain Size
................. 32
2.4.3
Volumetric Water Content and
Bulk Density
................ 33
2.5
Energy and Hydraulic Head
............. 35
2.5.1
Hydrostatics
................ 38
VII
Contents
CHAPTER
б
Deformation, Storage, and General Flow
Equations
...................... 187
6.1
Introduction
.................... 187
6.2
Effective Stress
................... 188
6.3
Atmospheric Pressure Fluctuations
......... 190
6.4
Excavation Instability and Liquefaction
....... 193
6.5
Slope Instability
.................. 195
6.5.1
Vaiont Reservoir Slide
........... 197
6.6
Earthquakes and Groundwater Pressures
...... 198
6.7
Matrix Compression
................ 201
6.7.1
Subsidence in the
San Joaquín
Valley
.... 206
6.7.2
Consolidation: Time-Dependent
Compression
................ 210
6.7.3
Pore Water Pressures in Sedimentary Basins
. 214
6.8
Changes in Subsurface Water Storage
........ 217
6.8.1
Elastic Storage
............... 218
6.8.2
Water Table Storage
............ 220
6.8.3
Storage in Aquifers with Fresh-Salt
Interfaces
.................. 224
6.9
General Flow Equations
.............. 225
6.9.1
Three-Dimensional Saturated Flow
..... 225
6.9.2
Two-Dimensional Saturated Flow
in Aquifers
................. 229
6.9.3
Three-Dimensional Unsaturated Flow
.... 234
6.10
Overview of Mathematical Modeling
........ 234
6.11
Problems
...................... 237
CHAPTER
7
Modeling Steady Flow with Basic Methods
..... 243
7.1
Introduction
.................... 243
7.2
Aquifers with Uniform Transmissivity
........ 244
7.2.1
Solution for Uniform Flow
......... 244
7.2.2
Solution for Radial Flow to a Well
..... 246
7.2.3
Solution for Uniform Recharge/Leakage
. . . 250
7.2.4
Estimating the Recharge/Transmissivity
Ratio
.................... 253
7.2.5
Superposition
............... 256
7.2.6
Capture Zone of a Well in Uniform Flow
. . 257
7.2.7
Wells near Straight Constant Head
Boundaries
................. 262
7.2.8
Wells near Straight Impermeable
Boundaries
................. 266
Contents
7.2.9 Wells
near Circular Constant Head
Boundaries
................. 270
7.2.10
Analyzing the
Long-Term
Drawdown
ofWells
.................. 273
7.3
Vertical Plane Flow
................. 275
7.4
Flow Net Graphical Solutions
............ 278
7.4.1
Boundary Conditions
........... 279
7.4.2
Discharges
................. 280
7.4.3
How to Draw Flow Nets
.......... 282
7.4.4 Anisotropie
Systems
............ 283
7.4.5
Deciding Whether to Use a One-, Two-, or
Three-Dimensional Model
......... 287
7.5
Unconfined Aquifers with a Horizontal Base
.... 289
7.5.1
Solutions for Uniform Flow, Radial Flow,
and Uniform Recharge
........... 289
7.5.2
Superposition and Imaging
......... 293
7.6
Problems
...................... 296
CHAPTER
8
Modeling Transient Well Hydraulics
and Mounding
................... 305
8.1
Introduction
.................... 305
8.2
Slug Tests
...................... 306
8.2.1
Cooper
et al.
Method for Wells Screened
below the Water Table
........... 308
8.2.2
Dagan Method for Wells Screened across the
Water Table
................. 312
8.2.3
Other Methods and Less Common
Circumstances
............... 315
8.2.4
Issues and Guidelines for Slug Tests
..... 316
8.3
Transient Response of Aquifers to Pumping
..... 318
8.3.1
The Theis Nonleaky Aquifer Solution
.... 318
8.3.2
The Hantush-Jacob Solution for a Leaky
Aquifer with No Aquitard Storage
...... 324
8.3.3
The Hantush Solution for a Leaky Aquifer
with Aquitard Storage
............ 326
8.3.4
The
Neuman
Solution for an Unconfined
Aquifer
................... 328
8.4
Pumping Test Analysis
............... 330
8.4.1
Log-Log Curve Matching
.......... 331
8.4.2
Semilog Drawdown vs. Time
........ 337
8.4.3
Pseudo-Steady Drawdown vs. Distance
. . . 339
Contents
CHAPTERS
CHAPTER
10
8.4.4
Constant-Drawdown Variable Discharge
Test
....................
8.5
Additional Considerations for Pumping Tests
. . . .
8.5.1
Superposition in Space—Multiple Wells and
Aquifer Boundaries
.............
8.5.2
Superposition in Time
—
Variable Pumping
Rates at a Well
...............
8.5.3
Partial Penetration and Hydraulics near die
Pumping Well
..............
8.6
Transient Mounding under a Rectangular
Recharge Area
...................
8.7
Problems
......................
Э.2
9.3
9.4
Computer-Assisted Flow Modeling
........
9.1
Introduction
..................
Finite Difference Method
............
9.2.1
Finite Difference Equations
.......
9.2.2
Boundary Conditions
.........
9.2.3
Example Model
............
Finite Element Method
.............
9.3.1
Finite Element Equations
........
9.3.2
Boundary Conditions
.........
Analytic Element Method
............
9.4.1
Equations for Two-Dimensional Aquifer
Flow
..................
9.4.2
Common Elements
...........
9.4.3
Example Model
............
Strengths and Limitations of These Methods
. .
Modeling Process
................
9.6.1
Conceptual Models, Parameters, and
Complexity
..............
Model Calibration and Parameter
Estimation
..............
Model Results, Predictions,
and Uncertainty
...........
Problems
....................
9.5
9.6
9.6.2
9.6.3
9.7
Groundwater Chemistry
. . . .
10.1
Introduction
.........
10.2
Molecular Properties of Water
.
10.3
Solute Concentration Units
. .
10.4
Natural Solutes
.....
340
341
342
344
347
349
352
359
359
360
362
369
371
374
379
383
384
385
392
398
400
403
404
407
410
413
421
421
423
425
427
Contents
CHAPTER
U
10.4.1
Inorganic Solutes
.............. 427
10.4.2
Electroneutrality
.............. 431
10.4.3
Presenting Inorganic Data Graphically
. . . 431
10.4.4
Organic Solutes
.............. 434
10.5
Chemical Reactions
................. 436
10.5.1
Equilibrium
................ 436
10.5.2
Activity and Effective Concentration
.... 439
10.5.3
Reaction Rates and Deviation from
Equilibrium
................ 441
10.6
Mineral Dissolution and Precipitation
....... 445
10.7
Gas-Water Partitioning
............... 447
10.8
Aqueous-Phase Reactions
.............. 450
10.8.1 pH,
Acids, and Bases
............ 450
10.8.2
Carbonate Reactions and Alkalinity
..... 452
10.8.3
Metal Complexes
.............. 456
10.8.4
Oxidation and Reduction
.......... 458
10.8.5
Biogeochemical
Redox
Reactions
...... 463
10.9 Sorption...................... 465
10.9.1
Surface Complexation of Ions
....... 466
10.9.2 Nonpolar
Organic Compounds
....... 471
10.10
Isotopes
...................... 476
10.10.1
Stable Isotopes and Water Origins
..... 476
10.10.2 Radioisotopes
and Age Dating
....... 478
10.10.3
Groundwater Records of Paleodimate
. . . 484
10.11
Examples of Natural Groundwater Chemistry
Processes
...................... 485
10.11.1
Floridán
Aquifer: Regional Scale
...... 485
10.11.2
Floridán
Aquifer: Local Scale
........ 488
10.11.3
Milk River Aquifer
............. 490
10.12
Problems
...................... 494
Groundwater Contamination
............ 499
11.1
Introduction
.................... 499
11.2
Contamination Sources
............... 500
11.2.1
Leaking Storage Tanks
........... 501
11.2.2
Septic Systems
............... 501
11.2.3
Landfills
.................. 503
11.2.4
Others
................... 504
11.3
Organic Contaminants
............... 505
11.3.1
Overview of Migration Patterns
....... 506
Contents
11.3.2
Structure
and Occurrence of Common
Contaminants
............... 508
21.3.3
Properties of Common Contaminants
. . . 512
11.4
Nonaqueous-Phase Liquids
............. 516
11.4.1
Saturation, and Wetting and Nonwef ting
Fluids
................... 518
11.4.2
Interfacial
Tension and Capillary Pressure
. . 519
11.4.3
Capillary Pressure vs. Saturation and
Residual Saturation
............. 523
11.4.4
Relative Permeability and Flow of Multiple
Phases
................... 526
П.5
Sohlte
Transport. Processes
............. 527
11.5.1
Advection and Mechanical Dispersion
. . . 527
11.5.2
Moiecular Diffusion
............
52Э
11.5.3 Sorption.................. 533
12.5.4
Colioid Transport
............. 535
11.6
Case Studies of Solute
Transpon
.......... 537
11.6.1
CFB
Borden,
Ontario, Tracer Test
...... 537
11.6.2
North Carolina Gasoline and Diesel Spill
. . 542
11.7
Modeling Solute Transport
............. 545
11.7.1
Modeling Dispersion and Diffusion
.... 547
11.7.2
General Equations for NonreaciiveSoluies
. 553
11.7.3
General Equations for Reactive Solutes
. . . 553
11.7.4
Boundary Conditions
........... 555
11.7.5
One-Dimensional Solution for a Step
Inlet Source
................ 556
11.7.6
Solution for a Pulse Point Source
...... 559
11.7.7
Other More Complex Solutions
....... 560
11.8
Investigating Contamination
............ 561
11.8.1
Sampling Groundwater
........... 561
11.8.2
Sampling Pore Gases
............ 564
11.8.3
Electromagnetic Surveys
.......... 565
11.8.4
Investigating NAPLs
............ 566
11.9
Remediating Contamination
............ 567
11.9.1
Source Removal or Isolation
........ 568
11.9.2
NAPL Recovery
............... 570
11.9.3
Hydrauîic
Contrai
of Soiute Plumes
.... 571
11.9.4
Soil Vapor Extraction
............ 573
11.9.5
Bioremediation
.............. 577
11.9.6
Engineered In Situ Reaction Zones
..... 579
11.10
Problems
......................
58χ
Contents
CHAPTER
12
Subsurface Heat Flow and Geothermal Energy
. . . 587
12.1
Introduction
.................... 587
12.2
Energy and Heat Flow Processes
........... 588
12.2.1
Conduction
................ 591
12.2.2
Advection
................. 592
12.2.3
General Equations of Energy and
Heat Flow
................. 593
12.2.4
Modeling Heat Flow
............ 594
12.2.5
Analytic Model of Steady One-Dimensional
Heat Flow
................. 595
12.2.6
Analytic Model ofTransient Cyclic
One-Dimensional Heat Flow
........ 598
12.3
Crustal Temperatures and Heat Flow
........ 600
12.4
Shallow Temperatures
............... 602
12.4.1
Climate Change Impacts
.......... 602
12.4.2
Recharge and Discharge Impacts
...... 604
12.5 Hydrothermal
Systems and Geysers
......... 607
12.6
Geothermal Energy
................. 612
12.6.1
Geothermal Electric Power
......... 612
12.6.2
Underground Thermal Energy Storage
and Heat Pumps
.............. 614
12.7
Problems
...................... 617
Appendix A: Units and Conversions
........ 621
A.1 Length [LJ
..................... 621
A.2 Area[L2]
...................... 621
A.3 Volume [L3]
.................... 621
A.4 Time[T]
...................... 621
A.5 Mass [M] and Weight [ML/T2] at Earth s Surface
. . . 622
A.6 Force [ML/T2]
................... 622
A.7 Pressure or Stress [M/LT2]
.............. 622
A.8 Energy [MLYr2]
.................. 622
A.9 Power [ML2
Д3]
.................. 622
АЛО
Angle
........................ 622
АЛ1
Temperature
.................... 623
A.
12
Velocity and Hydraulic Conductivity [L/T]
...... 623
A.13 Transmissivity [L2/TJ
................ 623
A.14 Discharge (Flow Rate) [L3/Tj
............ 623
A.15 Unit Prefixes
.................... 623
A.
16
Performing Unit Conversions
............ 624
Contents
Appendix
В:
Mathematics Primer
.......... 625
B.I Algebra and Geometry
............... 625
B.2 Functions of One Variable
............. 626
B.3 Formulas for Common Derivatives
......... 626
B.4 Functions of Two or More Variables
......... 627
Appendix C: Book Website
............. 629
Answers to Selected Problems
........... 631
References
..................... 641
Index
........................ 665
|
any_adam_object | 1 |
author | Fitts, Charles R. 1953- |
author_GND | (DE-588)1277742707 |
author_facet | Fitts, Charles R. 1953- |
author_role | aut |
author_sort | Fitts, Charles R. 1953- |
author_variant | c r f cr crf |
building | Verbundindex |
bvnumber | BV040407458 |
callnumber-first | G - Geography, Anthropology, Recreation |
callnumber-label | GB1003 |
callnumber-raw | GB1003.2 |
callnumber-search | GB1003.2 |
callnumber-sort | GB 41003.2 |
callnumber-subject | GB - Physical Geography |
classification_rvk | RB 10354 TI 8100 |
ctrlnum | (OCoLC)812262167 (DE-599)BVBBV040407458 |
dewey-full | 551.49 |
dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 551 - Geology, hydrology, meteorology |
dewey-raw | 551.49 |
dewey-search | 551.49 |
dewey-sort | 3551.49 |
dewey-tens | 550 - Earth sciences |
discipline | Geologie / Paläontologie Geographie |
edition | 2. ed. |
format | Book |
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id | DE-604.BV040407458 |
illustrated | Illustrated |
indexdate | 2024-07-10T00:23:22Z |
institution | BVB |
isbn | 9780123847058 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-025260501 |
oclc_num | 812262167 |
open_access_boolean | |
owner | DE-19 DE-BY-UBM DE-703 DE-473 DE-BY-UBG DE-634 DE-29 DE-83 DE-384 |
owner_facet | DE-19 DE-BY-UBM DE-703 DE-473 DE-BY-UBG DE-634 DE-29 DE-83 DE-384 |
physical | XIX, 672 S. Ill., graph. Darst., Kt. |
publishDate | 2013 |
publishDateSearch | 2013 |
publishDateSort | 2013 |
publisher | Elsevier, AP |
record_format | marc |
spelling | Fitts, Charles R. 1953- Verfasser (DE-588)1277742707 aut Groundwater science Charles R. Fitts 2. ed. Amsterdam [u.a.] Elsevier, AP 2013 XIX, 672 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Eau souterraine Grondwater gtt Yeraltı suyu Yeraltı suyu ekoloji Écologie de l'eau souterraine Groundwater Groundwater ecology Mathematisches Modell (DE-588)4114528-8 gnd rswk-swf Fließverhalten (DE-588)4154640-4 gnd rswk-swf Hydrologie (DE-588)4026309-5 gnd rswk-swf Strömungsmechanik (DE-588)4077970-1 gnd rswk-swf Simulation (DE-588)4055072-2 gnd rswk-swf Hydrogeologe (DE-588)1026776147 gnd rswk-swf Hydrogeologie (DE-588)4026307-1 gnd rswk-swf Grundwasser (DE-588)4022369-3 gnd rswk-swf Numerische Strömungssimulation (DE-588)4690080-9 gnd rswk-swf Hydrologie (DE-588)4026309-5 s Hydrogeologe (DE-588)1026776147 s Grundwasser (DE-588)4022369-3 s DE-604 Fließverhalten (DE-588)4154640-4 s Mathematisches Modell (DE-588)4114528-8 s Simulation (DE-588)4055072-2 s Strömungsmechanik (DE-588)4077970-1 s Numerische Strömungssimulation (DE-588)4690080-9 s Hydrogeologie (DE-588)4026307-1 s 1\p DE-604 Digitalisierung UB Bamberg application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025260501&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 | Fitts, Charles R. 1953- Groundwater science Eau souterraine Grondwater gtt Yeraltı suyu Yeraltı suyu ekoloji Écologie de l'eau souterraine Groundwater Groundwater ecology Mathematisches Modell (DE-588)4114528-8 gnd Fließverhalten (DE-588)4154640-4 gnd Hydrologie (DE-588)4026309-5 gnd Strömungsmechanik (DE-588)4077970-1 gnd Simulation (DE-588)4055072-2 gnd Hydrogeologe (DE-588)1026776147 gnd Hydrogeologie (DE-588)4026307-1 gnd Grundwasser (DE-588)4022369-3 gnd Numerische Strömungssimulation (DE-588)4690080-9 gnd |
subject_GND | (DE-588)4114528-8 (DE-588)4154640-4 (DE-588)4026309-5 (DE-588)4077970-1 (DE-588)4055072-2 (DE-588)1026776147 (DE-588)4026307-1 (DE-588)4022369-3 (DE-588)4690080-9 |
title | Groundwater science |
title_auth | Groundwater science |
title_exact_search | Groundwater science |
title_full | Groundwater science Charles R. Fitts |
title_fullStr | Groundwater science Charles R. Fitts |
title_full_unstemmed | Groundwater science Charles R. Fitts |
title_short | Groundwater science |
title_sort | groundwater science |
topic | Eau souterraine Grondwater gtt Yeraltı suyu Yeraltı suyu ekoloji Écologie de l'eau souterraine Groundwater Groundwater ecology Mathematisches Modell (DE-588)4114528-8 gnd Fließverhalten (DE-588)4154640-4 gnd Hydrologie (DE-588)4026309-5 gnd Strömungsmechanik (DE-588)4077970-1 gnd Simulation (DE-588)4055072-2 gnd Hydrogeologe (DE-588)1026776147 gnd Hydrogeologie (DE-588)4026307-1 gnd Grundwasser (DE-588)4022369-3 gnd Numerische Strömungssimulation (DE-588)4690080-9 gnd |
topic_facet | Eau souterraine Grondwater Yeraltı suyu Yeraltı suyu ekoloji Écologie de l'eau souterraine Groundwater Groundwater ecology Mathematisches Modell Fließverhalten Hydrologie Strömungsmechanik Simulation Hydrogeologe Hydrogeologie Grundwasser Numerische Strömungssimulation |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=025260501&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT fittscharlesr groundwaterscience |