Hydrology and water resources engineering:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Pangbourne
Alpha Science Internat.
2001
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 561 S. graph. Darst. |
ISBN: | 1842650238 |
Internformat
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Datensatz im Suchindex
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adam_text | HYDROLOGY AND WATER RESOURCES ENGINEERING SUB GSTTINGEN 214 868 613 K.C.
PATRA T V MAI * NAROSA PUBLISHING HOUSE NEW DELHI CHENNAI MUMBAI
CALCUTTA CONTENTS PREFACE VII 1. INTRODUCTION 1 1.1 GENERAL 1 1.2
HISTORY OF HYDROLOGY 1 1.3 METEOROLOGY 3 LAPSE RATE 4 PRESSURE 5 WATER
VAPOUR 5 PRECIPITABLE WATER 7 LATENT HEAT 9 HUMIDITY 10 1.4 CLOUD AND
RAINDROP FORMATION 10 1.5 HYDROLOGIC CYCLE 11 1.6 AVAILABILITY OF WATER
ON EARTH 14 1.7 IMPORTANCE OF HYDROLOGY AND ITS APPLICATIONS IN
ENGINEERING 16 PROBLEMS 17 2. STATISTICS AND PROBABILITIES IN HYDROLOGY
19 2.1 INTRODUCTION 19 2.2 STATISTICAL PARAMETERS 20 CENTRAL TENDENCY
PARAMETERS 20 DISPERSION CHARACTERISTICS 25 SKEWNESS 26 KURTOSIS 27 2.3
THEORETICAL PROBABILITY DISTRIBUTION 30 DISCRETE DISTRIBUTION 31
CONTINUOUS DISTRIBUTION 33 2.4 FREQUENCY ANALYSIS 38 GUMBEL S
DISTRIBUTION 40 PEARSON TYPE III DISTRIBUTION 41 LOG PEARSON TYPE III
DISTRIBUTION 41 NORMAL DISTRIBUTION 42 LOG NORMAL DISTRIBUTION 43 2.5
GRAPHICAL METHOD USING PROBABILITY PAPER 50 CONSTRUCTION OF PROBABILITY
PAPER 51 SELECTION OF TYPE OF DISTRIBUTION 51 2.6 CONFIDENCE LIMITS 52
2.7 REGRESSION AND CORRELATION 56 GRAPHICAL METHOD 56 ANALYTICAL METHOD
56 CORRELATION 58 SIGNIFICANCE OF PARAMETERS 60 STANDARD FORMS OF
BIVARIATE EQUATIONS 61 X CONTENTS. 2.8 MULTIVARIATE LINEAR REGRESSION
AND CORRELATION 64 MULTIPLE CORRELATION COEFFICIENT 65 2.9 ANALYSIS OF
TIME SERIES 68 TREND ANALYSIS 70 OSCILLATION 73 JUMP 74 PERIODICITY OR
SEASONALITY 74 SERIAL CORRELATION 76 STOCHASTIC COMPONENT 78 2.10
DEPENDENC MODELS 78 THOMAS-FIERING MODEL 79 2.11 CHI-SQUARE TEST OF
GOODNESS OF FIT 82 PROBLEMS 90 3. PRECIPITATION 94 3.1 INTRODUCTION 94
3.2 FORMS OF PRECIPITATION 95 3.3 TYPES OF PRECIPITATION 96 3.4 RAINFALL
IN INDIA 99 3.5 MEASUREMENT OF RAINFALL 101 NON-RECORDING RAIN GAUGE 102
RECORDING TYPE RAIN GAUGES 103 WEATHER RADAR 106 TOTALISERS 107 3.6
NETWORK DESIGN 107 OPTIMUM NUMBER OF RAIN GAUGE STATIONS 108 IDEAL
LOCATION FOR A RAIN GAUGE STATION 109 3.7 CONSISTENCY OF RAINFALL DATA
111 3.8 ESTIMATING MISSING DATA 114 ARITHMETIC MEAN METHOD 114 NORMAL
RATIO METHOD 114 REGRESSION METHOD 115 INVERSE DISTANCE METHOD 115 3.9
PRESENTATION OF PRECIPITATION DATA 118 MOVING AVERAGE CURVE 119 MASS
CURVE 119 RAINFALL HYETOGRAPH 119 INTENSITY-DURATION-FREQUENCY CURVES
121 3.10 MEAN AERIAL RAINFALL 122 ARITHMETIC MEAN METHOD 123 THIESSEN
POLYGON METHOD 123 ISOHYETAL METHOD 125 GRID POINT METHOD 126 OROGRAPHIC
METHOD 127 ISOPERCENTAL METHOD 127 3.11 DEPTH-AREA-DURATION CURVE 129
3.12 DESIGN STORM 131 STATISTICAL STORM 132 PROBABLE MAXIMUM
PRECIPITATION 140 STANDARD PROJECT STORM 145 PROBLEMS 146 - CONTENTS XI
4. LOSSES FROM PRECIPITATION 149 4.1 INTRODUCTION 149 4.2 EVAPORATION
AND ITS ESTIMATION 149 MEASUREMENT USING EVAPORATION PANS 151 EMPIRICAL
EQUATIONS 154 WATER BALANCE METHOD 156 ENERGY BUDGET METHOD 157 MASS
TRANSFER METHOD 161 4.3 METHODS TO REDUCE RESERVOIR EVAPORATION 161 4.4
EVAPOTRANSPIRATION (CONSUMPTIVE USE) AND ITS ESTIMATION 163 EXPERIMENTAL
MEASUREMENT 164 CLIMATIC APPROACHES 165 4.5 INTERCEPTION 176 4.6
DEPRESSION STORAGE 178 4.7 INFILTRATION AND ITS ESTIMATION 178 FACTORS
AFFECTING INFILTRATION 179 FIELD MEASUREMENT USING INFILTROMETERS 182
RAINFALL-RUNOFF ANALYSIS 184 INFILTRATION INDICES 185 MASS CURVE METHOD
190 ANALYTICAL MODELS 191 4.8 WATERSHED LEAKAGE 191 PROBLEMS 192 5.
GROUND WATER 195 5.1 INTRODUCTION 195 5.2 ZONING OF SUBSURFACE 195
AERATION ZONE 195 SATURATED ZONE 197 5.3 WATER BEARING MATERIALS 197 5.4
AQUIFER PROPERTIES AFFECTING GROUND WATER 199 AQUIFER MATERIAL
PROPERTIES 200 GROUND WATER FLOW PARAMETERS 202 STRATIFICATION OF LAYERS
207 CALCULATION OF FLOW FROM FLOWNET 209 5.5 STEADY FLOW EQUATION 211
5.6 UNSTEADY FLOW EQUATION 214 5.7 GROUND WATER FLOW PROBLEMS 215 STEADY
FLOW IN UNCONFINED AQUIFER 215 STEADY FLOW IN CONFINED AQUIFER OF
CONSTANT THICKNESS 217 STEADY FLOW IN A CONFINED AQUIFER OF VARIABLE
THICKNESS 219 UNCONFINED FLOW WITH RECHARGE FROM RAINFALL 220 DRAINAGE
USING TILES 222 FLOW THROUGH LEAKY AQUIFER 224 FLOW INTO INFILTRATION
GALLERIES 226 5.8 WELL HYDRAULICS 227 STEADY RADIAL FLOW INTO A WELL 228
PARTIALLY PENETRATED WELL 233 5.9 UNSTEADY FLOW INTO A WELL 235 CONFINED
AQUIFER 235 UNSTEADY RADIAL FLOW INTO A WELL IN UNCONFINED AQUIFER 242
XII CONTENTS . 5.10 SPACING OF WELLS 243 5.11 WELL LOSS 245 5.12 WELL
ADJACENT TO A STREAM (METHOD OF IMAGES) 246 5.13 SEA WATER INTRUSION 248
5.14 METHODS OF GROUND WATER INVESTIGATION 250 HYDRO-GEOLOGIC
INVESTIGATION 250 AT SURFACE 252 SUB-SURFACE GEOPHYSICAL METHODS 253
MODEL STUDY 255 HYDROLOGIC INVESTIGATION 255 PROBLEMS 256 6. STREAM FLOW
258 6.1 INTRODUCTION 258 6.2 TERMS USED 258 6.3 FACTORS AFFECTING RUNOFF
261 6.4 STAGE MEASUREMENT 266 NON-RECORDING STAGE RECORDERS 266
AUTOMATIC GAUGE RECORDERS 268 6.5 DISCHARGE MEASUREMENT 270 DISCHARGE
MEASURING STRUCTURES 270 APPROXIMATE AREA-SLOPE METHOD 270 SLOPE METHOD
273 AREA VELOCITY METHOD 276 RADIO TRACER METHOD 286 DILUTION TECHNIQUE
286 ELECTROMAGNETIC INDUCTION METHOD 287 6.6 STAGE DISCHARGE
RELATIONSHIP 287 EXTENSION OF STAGE DISCHARGE RELATION 290 6.7
REQUIREMENT OF A GOOD GAUGE-DISCHARGE SITE 295 NETWORK DESIGN 296 6.8
RUNOFF COMPUTATION 297 EXTENSION OF RUNOFF RECORDS 297 6.9 RUNOFF FROM
RAINFALL RECORDS 305 USE OF RAINFALL-RUNOFF DATA AT A SITE 305 USE OF
RAINFALL-RUNOFF RELATION OF NEIGHBOURING SITES 308 EMPIRICAL RELATIONS
310 6.10 RUNOFF SIMULATION MODELS 315 STEPS IN MODELLING 316 HEC MODEL
317 PROBLEMS 321 7. HYDROGRAPH 324 7.1 INTRODUCTION 324 7.2 HYDROGRAPH
CONCEPT 325 7.3 COMPONENTS OF HYDROGRAPH 326 7.4 UNIT HYDROGRAPH 334
ASSUMPTIONS AND CONDITIONS IN UNIT HYDROGRAPH 3?5 LIMITATIONS OF UNIT
HYDROGRAPH 336 USES OF UNIT HYDROGRAPH 336 7.5 DERIVATION OF UNIT
HYDROGRAPH 337 FROM SIMPLE STORM HYDROGRAPH 337 FROM COMPLEX STORMS 341
- CONTENTS XIII 7.6 S-HYDROGRAPH 346 7.7 CHANGE OF UNIT DURATION OF UNIT
HYDROGRAPH 349 REQUIRED DURATION IS AN INTEGER MULTIPLE OF D-HOUR ; 349
REQUIRED DURATION IS A REAL MULTIPLE OF D-HOUR 350 7.8 INSTANTANEOUS
UNIT HYDROGRAPH (IUH) 350 DERIVATION OF UH FROM IUH 352 7.9 DERIVATION
OF INSTANTANEOUS UNIT HYDROGRAPH 353 FROM S-HYDROGRAPH 353 FROM
CONCEPTUAL MODELS 353 7.10 SYNTHETIC UNIT HYDROGRAPH 379 SNYDER S
APPROACH 379 SYNTHETIC UNIT HYDROGRAPH FOR INDIAN CATCHMENT 381 GOEL ET
AL. METHOD 382 7.11 DIMENSIONLESS UNIT HYDROGRAPH 384 7.12 DISTRIBUTION
GRAPH 386 PROBLEMS 388 8. DESIGN FLOOD 392 8.1 INTRODUCTION 392 8.2
DESIGN FLOOD 392 8.3 FLOOD PEAK ESTIMATIONS FOR UNGAUGED CATCHMENTS 395
RATIONAL METHOD 395 EMPIRICAL EQUATIONS 399 ENVELOPE CURVES 408 8.4
FLOOD ESTIMATION FOR GAUGED CATCHMENT 410 FLOOD FREQUENCY ANALYSIS 411
UNIT HYDROGRAPH APPROACH 420 8.5 REGIONAL FLOOD FREQUENCY ANALYSIS 427
8.6 ANALYSIS OF PARTIAL DURATION SERIES 430 PROBLEMS 432 9. FLOOD
ROUTING 434 9.1 INTRODUCTION 434 9.2 ROUTING METHODS 435 9.3 HYDROLOGIC
CHANNEL ROUTING 437 MUSKINGUM EQUATION 439 WORKING VALUE METHOD 447 9.4
HYDRAULIC CHANNEL ROUTING 449 FINITE DIFFERENCE METHOD 450 NUMERICAL
METHODS IN ROUTING 452 9.5 HYDROLOGIC RESERVOIR ROUTING 453 ANALYTICAL
(TRIAL AND ERROR) METHOD 454 MODIFIED PULS METHOD 455
INFLOWRSTORAGE-DISCHARGE METHOD 461 GOODRICH METHOD 466 9.6 FLOOD
ROUTING MACHINES 469 MECHANICAL FLOOD ROUTERS 469 ELECTRIC ANALOG
ROUTING MACHINE 469 DIGITAL COMPUTERS 470 9.7 FLOOD FORECASTING 470 9.8
FLOOD CONTROL MEASURES 482 PROBLEMS 485 XIV CONTENTS. 10. RESERVOIR AND
SEDIMENTATION 488 10.1 INTRODUCTION 488 10.2 FIXATION OF RESERVOIR
CAPACITY 488 RIPPLES MASS CURVE 489 SEQUENT PEAK ALGORITHM 490 10.3
DETERMINATION OF SPILLWAY SIZE 494 10.4 ALLOCATION OF STORAGE SPACE FOR
VARIOUS USES 496 RESERVOIR ELEVATION-AREA-CAPACITY CURVE 497 RESERVOIR
OPERATION 497 RESERVOIR WORKING TABLE 498 10.5 RESERVOIR SEDIMENTATION
501 10.6 DETERMINATION OF SEDIMENT YIELD AT A RIVER SITE 502 SHEET
EROSION 502 SEDIMENT MEASUREMENT BY SAMPLE RECORDER 504 BED LOAD
ESTIMATION 507 EMPIRICAL RELATIONS FOR TOTAL SEDIMENT LOAD 509 10.7
RESERVOIR SEDIMENTATION 513 RESERVOIR CLASSIFICATION 514 DISTRIBUTION OF
SEDIMENT IN RESERVOIRS 515 10.8 RESERVOIR SEDIMENT CONTROL 521 10.9
RESERVOIR ECONOMICS 524 COST-BENEFIT RATIO 524 OPTIMISATION OF BENEFITS
528 LINEAR PROGRAMMING IN MULTIPURPOSE WATER RESOURCE PROJECTS 530
PROBLEMS 532 OBJECTIVE QUESTIONS 534 REFERENCES 547 CONVERSION FACTORS
549 INDEX 553
|
any_adam_object | 1 |
author | Patra, Kanhu Charan |
author_facet | Patra, Kanhu Charan |
author_role | aut |
author_sort | Patra, Kanhu Charan |
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ctrlnum | (OCoLC)44549024 (DE-599)BVBBV013869448 |
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dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 551 - Geology, hydrology, meteorology |
dewey-raw | 551.48 |
dewey-search | 551.48 |
dewey-sort | 3551.48 |
dewey-tens | 550 - Earth sciences |
discipline | Geologie / Paläontologie Geographie |
format | Book |
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illustrated | Illustrated |
indexdate | 2024-07-09T18:53:28Z |
institution | BVB |
isbn | 1842650238 |
language | English |
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spelling | Patra, Kanhu Charan Verfasser aut Hydrology and water resources engineering K. C. Patra Pangbourne Alpha Science Internat. 2001 XIV, 561 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Hydraulic engineering Hydrology Hydrologie (DE-588)4026309-5 gnd rswk-swf Hydraulik (DE-588)4026288-1 gnd rswk-swf Wasserwirtschaft (DE-588)4064821-7 gnd rswk-swf Wasserbau (DE-588)4064700-6 gnd rswk-swf Hydrologie (DE-588)4026309-5 s DE-604 Wasserwirtschaft (DE-588)4064821-7 s Wasserbau (DE-588)4064700-6 s Hydraulik (DE-588)4026288-1 s 1\p DE-604 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009486801&sequence=000001&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 | Patra, Kanhu Charan Hydrology and water resources engineering Hydraulic engineering Hydrology Hydrologie (DE-588)4026309-5 gnd Hydraulik (DE-588)4026288-1 gnd Wasserwirtschaft (DE-588)4064821-7 gnd Wasserbau (DE-588)4064700-6 gnd |
subject_GND | (DE-588)4026309-5 (DE-588)4026288-1 (DE-588)4064821-7 (DE-588)4064700-6 |
title | Hydrology and water resources engineering |
title_auth | Hydrology and water resources engineering |
title_exact_search | Hydrology and water resources engineering |
title_full | Hydrology and water resources engineering K. C. Patra |
title_fullStr | Hydrology and water resources engineering K. C. Patra |
title_full_unstemmed | Hydrology and water resources engineering K. C. Patra |
title_short | Hydrology and water resources engineering |
title_sort | hydrology and water resources engineering |
topic | Hydraulic engineering Hydrology Hydrologie (DE-588)4026309-5 gnd Hydraulik (DE-588)4026288-1 gnd Wasserwirtschaft (DE-588)4064821-7 gnd Wasserbau (DE-588)4064700-6 gnd |
topic_facet | Hydraulic engineering Hydrology Hydrologie Hydraulik Wasserwirtschaft Wasserbau |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=009486801&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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