River dynamics and integrated river management:
Gespeichert in:
Hauptverfasser: | , , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Beijing
Tsinghua University Press
[2015]
Berlin Springer [2015] |
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | VIII, 847 Seiten Illustrationen, Diagramme, Karten 235 mm x 155 mm |
ISBN: | 9787302272571 9783642256516 9783642256523 |
Internformat
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245 | 1 | 0 | |a River dynamics and integrated river management |c Zhao-Yin Wang, Joseph H.W. Lee, Charles S. Melching |
264 | 1 | |a Beijing |b Tsinghua University Press |c [2015] | |
264 | 1 | |a Berlin |b Springer |c [2015] | |
300 | |a VIII, 847 Seiten |b Illustrationen, Diagramme, Karten |c 235 mm x 155 mm | ||
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CONTENTS
INTRODUCTION 1
1 BASIC CONCEPTS AND MANAGEMENT ISSUES OF RIVERS 5
1.1 BASIC CONCEPTS 5
1.1.1 HYDROLOGICAL CYCLE 5
1.1.2 DRAINAGE N ETWORK 6
1.1.3 SEDIMENT ' 13
1.1.4 SEDIMENT LOADS AND BED FORMS 16
1.1.5 RIVER PATTERNS 20
1.1.6 MORPHOLOGICAL AND HYDRAULIC FEATURES 23
1.1.7 CHEMICAL FEATURES 25
1.1.8 RIVER ECOLOGY 27
1.2 MAJOR RIVER MANAGEMENT ISSUES 33
1.2.1 WATER RESOURCES 33
1.2.2 FLOODING 35
1.2.3 SOIL EROSION 38
1.2.4 RIVERBED INCISION AND GEOLOGICAL DISASTERS 41
1.2.5 POLLUTION AND EUTROPHICATION 43
1.2.6 RESERVOIR MANAGEMENT 45
1.2.7 RIVER USES 46
1.2.8 ECOLOGICAL RESTORATION AND INTEGRATED RIVER MANAGEMENT 47
REVIEW QUESTIONS 50
REFERENCES : : 50
2 VEGETATION-EROSION DYNAMICS 53
2.1 EROSION 53
2.1.1 AGENTS OF EROSION 53
2.1.2 WATER EROSION 56
2.1.3 GRAIN EROSION AND CONTROL STRATEGY 62
2.2 VEGETATION 70
2.2.1 VARIOUS VEGETATIONS 70
2.2.2 ECOLOGICAL STRESSES ON VEGETATION 77
2.2.3 CLASSIFICATION OF STRESSES 81
2.3 VEGETATION-EROSION DYNAMICS ! 86
2.3.1 DIFFERENTIAL EQUATIONS 86
2.3.2 APPLICATION OF VEGETATION-EROSION DYNAMICS 89
2.3.3 VEGETATION-EROSION CHART 94
2.3.4 APPLICATION OF VEGETATION-EROSION CHART 99
2.4 RIPARIAN VEGETATION 108
2.4.1 ZONING OF RIPARIAN VEGETTION 108
2.4.2 ROLE OF VEGETATION IN FLUVIAL PROCESS 110
2.4.3 DENDROGEOMROPHIC EVIDENCE OF EVOLUTION OF INCISED RIVERS 114
REVIEW QUESTIONS 116
REFERENCES 117
HTTP://D-NB.INFO/1016751877
RIVER DYNAMICS AND INTEGRATED RIVER MANAGEMENT
3 MOUNTAIN RIVERS AND INCISED CHANNELS 123
3.1 INCISED RIVERS 123
3.1.1 RIVERBED INCISION 123
3.1.2 CAUSES OF INCISION 127
3.1.3 EVOLUTION PROCESS OF INCISED RIVER 132
3.2 BEDROCK CHANNELS 137
3.2.1 INCISION RATE OF BEDROCK CHANNELS 137
3.2.2 INCISION PROCESSES OF BEDROCK CHANNELS 140
3.2.3 KNICKPOINTS 143
3.3 BED STRUCTURES RESISTING INCISION 145
3.3.1 STEP-POOL SYSTEMS 145
3.3.2 DEVELOPMENT OF A STEP-POOL SYSTEM 150
3.3.3 OTHER TYPES OF BED STRUCTURES 159
3.4 ENVIRONMENTAL IMPACTS AND CONTROL STRATEGIES OF RIVERBED INCISION
163
3.4.1 ENVIRONMENTAL IMPACTS 163
3.4.2 INCISION CONTROL STRATEGIES 168
REVIEW QUESTIONS 181
REFERENCES 181
4 DEBRIS FLOWS AND LANDSLIDES 193
4.1 DISASTERS CAUSED BY LANDSLIDES AND DEBRIS FLOWS 193
4.1.1 LANDSLIDES 193
4.1.2 DEBRIS FLOWS 197
4.1.3 LANDSLIDE DISASTERS 200
4.1.4 DEBRIS FLOW DISASTERS 210
4.2 EFFECTS OF LANDSLIDES ON RIVERS 213
4.2.1 ESSENTIAL CAUSE OF LANDSLIDES 213
4.2.2 LANDSLIDE DAMS 215
4.3 MECHANISMS OF DEBRIS FLOWS 223
4.3.1 PSEUDO-ONE-PHASE AND TWO-PHASE DEBRIS FLOWS 223
4.3.2 MECHANISMS OF TWO-PHASE DEBRIS FLOWS 226
4.3.3 PHENOMENA AND MECHANISMS OF PSEUDO-ONE-PHASE DEBRIS FLOWS 233
4.3.4 SLOPE DEBRIS FLOWS 243
4.4 MITIGATION OF LANDSLIDE AND DEBRIS FLOW HAZARDS 246
4.4.1 MITIGATION OF LANDSLIDE HAZARDS 246
4.4.2 PREDICTION AND WARNING OF DEBRIS FLOW 248
4.4.3 DEBRIS FLOW CONTROL ENGINEERING 250
4.4.4 RECLAMATION OF LANDSLIDES AND DEBRIS FLOW FANS 255
APPENDIX MATHEMATICAL DERIVATION AND EXPLANATION FOR THE PHENOMENON OF
ROLL WAVES 257
REVIEW QUESTIONS 260
REFERENCES 260
5 SEDIMENT MOVEMENT IN ALLUVIAL RIVERS 265
5.1 HYDRAULICS 265
5.1.1 HYDROGRAPH 265
5.1.2 OPEN CHANNEL FLOWS 267
IV
CONTENTS
5.1.3 VELOCITY PROFILE 270
5.1.4 BED FORMS 273
5.1.5 RESISTANCE 280
5.2 SEDIMENT TRANSPORTATION AND HYPERCONCENTRATED FLOW 286
5.2.1 FALL VELOCITY 286
5.2.2 SEDIMENT TRANSPORTATION 290
5.2.3 HYPERCONCENTRATED FLOW 294
5.3 RIVER PATTERNS 309
5.3.1 MEANDERING RIVERS 310
5.3.2 STRAIGHT RIVERS 312
5.3.3 BRAIDED AND ANABRANCHING RIVERS 314
5.3.4 WANDERING RIVERS 315
5.3.5 ANASTOMOSING RIVERS 318
5.3.6 AVULSION 319
5.4 NEW APPROACHES 320
5.4.1 RATE OF BED LOAD TRANSPORT IN MOUNTAIN STREAMS 320
5.4.2 RIVER MOTION DYNAMICS 324
5.4.3 WATER-SEDIMENT CHART 329
5.4.4 RIVER SEDIMENT MATRIX 330
REVIEW QUESTIONS 332
REFERENCES 333
6 FLOOD DEFENSE AND WATER/SEDIMENT MANAGEMENT
*WITH PARTICULAR REFERENCE TO THE YELLOW RIVER 337
6.1 FLOOD DISASTERS 337
6.1.1 THE YELLOW RIVER BASIN 337
6.1.2 FLOOD DISASTERS IN THE HISTORY 338
6.1.3 TRAINING OF THE RIVER 342
6.1.4 RIVER TRAINING THEORIES 344
6.2 FLOOD DEFENSE STRATEGIES 344
6.2.1 WIDE RIVER VALLEY 344
6.2.2 NARROW CHANNEL 345
6.2.3 RESERVOIRS 346
6.2.4 GRAND LEVEES 347
6.2.5 FLOOD-DETENTION BASINS 347
6.2.6 REFORESTATION AND SEDIMENT-CHECK DAMS 347
6.2.7 ARTIFICIAL FLOOD 349
6.2.8 DREDGING 351
6.3 WATER RESOURCES MANAGEMENT 352
6.3.1 GENERAL CONDITIONS 352
6.3.2 A CASE STUDY*THE YELLOW RIVER DELTA 354
6.4 NEW PROBLEMS IN THE YELLOW RIVER MANAGEMENT 359
6.4.1 POWER GENERATION REDUCES THE CHANNEL CAPACITY 359
6.4.2 RECLAMATION OF THE FLOODPLAIN INCREASES FLOOD LOSS 362
6.4.3 WATER DIVERSION CAUSES FLOW CUT-OFF 363
6.4.4 COLLAPSE OF SPUR DYKES 364
6.4.5 WATER DIVERSION CHANGES FLUVIAL PROCESS 365
V
RIVER DYNAMICS AND INTEGRATED RIVER MANAGEMENT
6.4.6 DELTA CHANNEL STABILITY AND LAND CREATION 368
6.5 LESSONS FROM SANMENXIA RESERVOIR 373
6.5.1 SANMENXIA RESERVOIR 374
6.5.2 MANAGEMENT OF RESERVOIR SEDIMENTATION 377
6.5.3 SEDIMENTATION OF THE WEIHE RIVER INDUCED BY SANMENXIA RESERVOIR
380
6.5.4 EQUILIBRIUM SEDIMENTATION MODEL 384
6.5.5 CHANGED RIVER PATTERNS 385
6.5.6 EROSION AND RESILTATION BELOW SANMENXIA DAM 386
6.6 PROPOSED NEW STRATEGIES 388
6.6.1 RECLAMATION OF THE FLOODPLAIN 388
6.6.2 SCOURING THE YELLOW RIVER CHANNEL WITH SEAWATER 389
6.6.3 ARTIFICIAL HYPERCONCENTRATED FLOODS 390
6.6.4 INTERBASIN WATER TRANSFER PROJECTS 392
6.6.5 LIBERATE FLOOD DETENTION BASINS 392
REVIEW QUESTIONS 392
REFERENCES 393
7 DAMS AND IMPOUNDED RIVERS 397
7.1 IMPACTS OF DAMS ON THE ENVIRONMENT AND ECOLOGY 397
7.1.1 DAM CONSTRUCTION 397
7.1.2 WATER QUALITY IN RESERVOIRS 401
7.1.3 WATER QUALITY RELEASED FROM RESERVOIRS 405
7.1.4 WATER QUAL ITY CONTROL 406
7.1.5 IMPACTS ON ECOLOGY 408
7.2 RESERVOIR SEDIMENTATION MANAGEMENT 414
7.2.1 RESERVOIR SEDIMENTATION 414
7.2.2 SEDIMENTATION MANAGEMENT STRATEGIES 417
7.3 DAM FAILURE AND DAM REMOVAL 428
7.3.1 DAM FAILURE 428
7.3.2 DAM REMOVAL 435
7.4 CONSTRUCTION AND MANAGEMENT OF THE THREE GORGES PROJECT 439
7.4.1 CONSTRUCTION OF THE THREE GORGES DAM 440
7.4.2 SEDIMENTATION AND MANAGEMENT STRATEGIES 447
7.4.3 ENVIRONMENTAL AND SOCIAL IMPACTS 455
REVIEW QUESTIONS 460
REFERENCES 460
8 ESTUARY PROCESSES AND MANAGMENT 467
8.1 DELTAIC PROCESSES 467
8.1.1 TWO TYPES OF DELTA DEVELOPMENT 467
8.1.2 EFFECTS OF HUMAN ACTIVITIES 472
8.1.3 ECOLOGY OF MALE AND FEMALE RIVERS 474
8.1.4 PARASITIZING RIVERS 475
8.2 FLOODING RISK AND FLOOD DEFENCE STRATEGIES 479
8.2.1 FLOODING DUE TO SUBSIDENCE*VENICE LAGOON 479
8.2.2 TSUNAMI AND FLURRICANE 482
8.2.3 RAINSTORM FLOODING 484
VI
CONTENTS
8.3 ESTUARINE HYDROGRAPHY AND TIDAL FLUSHING 486
8.3.1 TIDAL CURRENTS 488
8.3.2 DENSITY STRATIFICATION 490
8.3.4 TIDAL FLUSHING 493
8.3.5 APPLICATION FOR ESTUARINE MANAGEMENT 498
8.4 EUTROPHICATION AND ALGAL BLOOM 502
8.4.1 SYMPTOMS AND ENVIRONMENTAL IMPACTS 503
8.4.2 CAUSES OF EUTROPHICATION 505
8.4.4 EUTROPHICATION CONTROL AND MANAGEMENT 509
8.5 WASTE DISPOSAL AND IMPACT ASSESSMENT 517
8.5.1 WASTE DISPOSAL 517
8.5.2 INITIAL MIXING 518
8.5.3 DIFFUSER DESIGN 525
8.5.4 CASE STUDY: HONG KONG HARBOR AREA TREATMENT SCHEME 529
8.6 COASTAL WETLANDS 533
8.6.1 FUNCTION OF WETLANDS 533
8.6.2 WETLAND EVOLUTION, DEGRADATION AND RESTORATION 539
8.6.3 WETLAND CONSTRUCTION AND PROTECTION 544
REVIEW QUESTIONS 548
REFERENCES 549
9 WATER QUALITY MANAGEMENT 555
9.1 WATER QUALITY AND POLLUTION 555
9.1.1 WATER QUALITY 555
9.1.2 POLLUTION 557
9.2 DISSOLVED OXYGEN 559 *
9.2.1 THE BASIC DISSOLVED OXYGEN PROBLEM 559
9.2.2 STREETER AND PHELPS MODEL 561
9.2.3 BIOCHEMICAL OXYGEN DEMAND 572
9.2.4 TOTAL DISSOLVED OXYGEN BALANCE 579
9.3 NUTRIENT EFFECTS 591
9.3.1 EUTROPHICATION 592
9.3.2 NUTRIENT CONTROL 596
9.4 WATERBORNE AND WATER-CONTACT DISEASES 603
9.4.1 WATER-CONTACT DISEASES AND INDICATOR ORGANISMS 604
9.4.2 MICROBIAL RISK ASSESSMENT 608
9.4.3 DISINFECTION METHODS 611
9.5 SEDIMENT CONTAMINATION 615
9.5.1 ASSESSMENT OF SEDIMENT TOXICITY 616
9.5.2 REMEDIATION/CLEANUP OF CONTAMINATED SEDIMENT 617
REVIEW QUESTIONS 622
RERENCES 624
10 RIVER ECOLOGY AND RESTORATION 633
10.1 RIVER ECOSYSTEMS 633
10.1.1 SPATIAL ELEMENTS OF RIVER ECOSYSTEMS 633
10.1.2 BIOLOGICAL COMMUNITIES 635
VII
RIVER DYNAMICS AND INTEGRATED RIVER MANAGEMENT
10.1.3 ECOLOGICAL CONDITIONS 642
10.1.4 ECOLOGICAL FUNCTIONS OF RIVERS 645
10.1.5 DYNAMIC EQUILIBRIUM 649
10.2 ECOLOGICAL STRESSES 650
10.2.1 NATURAL STRESSES 650
10.2.2 HUMAN-INDUCED STRESSES 655
10.2.3 INTRODUCTION OF EXOTIC SPECIES 666
10.3 ASSESSMENT OF RIVER ECOSYSTEMS 671
10.3.1 INDICATOR SPECIES 671
10.3.2 METRICS OF BIODIVERSITY 674
10.3.3 BIOASSESSMENT 686
10.3.4 HABITAT EVALUATION AND MODELING 689
10.4 RESTORATION STRATEGIES 698
10.4.1 DESIGN OF STREAM RESTORATION 698
10.4.2 INSTREAM STRUCTURES FOR HABITAT RESTORATION 700
10.4.3 STREAM RESTORATION 705
10.4.4 ARTIFICIAL WETLANDS 707
10.4.5 RIPARIAN VEGETATION RESTORATION AND FOOD PATCHES 709
10.4.6 RESTORATION OF IMPOUNDED AND CHANNELIZED STREAMS 712
10.4.7 RESTORATION OF ECOSYSTEMS DISTURBED BY OTHER STRESSES 713
REVIEW QUESTIONS 715
REFERENCES 715
11 INTEGRATED RIVER MANAGEMENT 725
11.1 PRINCIPLES OF INTEGRATED RIVER MANAGEMENT 725
11.1.1 MANAGEMENT OF RIVERS 725
11.1.2 STABILITY OF RIVERS 728
11.1.3 PRINCIPLES FOR RIVER MANAGEMENT 732
11.1.4 LIMIT VELOCITY LAW 740
11.2 SEDIMENT AND RIVER MORPHOLOGY MANAGEMENT 744
11.2.1 RIVER NETWORKS 744
11.2.2 EQUIVALENCY OF BED STRUCTURES AND BED LOAD MOTION 749
11.2.3 SEDIMENT BUDGET*SIZE DISTRIBUTION METHOD 762
11.2.4 SEDIMENT BUDGET MATRIX 772
11.3 METHODS OF INTEGRATED RIVER RESTORATION 774
11.3.1 HAZARD MITIGATION, AND ECOLOGY RESTORATION WITH ARTIFICIAL
STEP-POOL SYSTEM 775
11.3.2 DEBRIS FLOW CONTROL WITH ARTIFICIAL STEP-POOL SYSTEM 780
11.3.3 REFORESTATION AND TERRESTRIAL ECOSYSTEM MANAGEMENT WITH
SELECTED WOOD SPECIES 791
REVIEW QUESTIONS 794
REFERENCES 795
SUBJECT INDEX 801
COLOR FIGURES INDEX 807
VIII |
any_adam_object | 1 |
author | Wang, Zhao-Yin Lee, Joseph H.W Melching, Charles S. |
author_facet | Wang, Zhao-Yin Lee, Joseph H.W Melching, Charles S. |
author_role | aut aut aut |
author_sort | Wang, Zhao-Yin |
author_variant | z y w zyw j h l jh jhl c s m cs csm |
building | Verbundindex |
bvnumber | BV043406091 |
classification_rvk | RB 10363 |
ctrlnum | (OCoLC)936807770 (DE-599)DNB1016751877 |
discipline | Geographie |
format | Book |
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id | DE-604.BV043406091 |
illustrated | Illustrated |
indexdate | 2024-08-03T02:54:31Z |
institution | BVB |
isbn | 9787302272571 9783642256516 9783642256523 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-028824483 |
oclc_num | 936807770 |
open_access_boolean | |
owner | DE-824 |
owner_facet | DE-824 |
physical | VIII, 847 Seiten Illustrationen, Diagramme, Karten 235 mm x 155 mm |
publishDate | 2015 |
publishDateSearch | 2015 |
publishDateSort | 2015 |
publisher | Tsinghua University Press Springer |
record_format | marc |
spelling | Wang, Zhao-Yin Verfasser aut River dynamics and integrated river management Zhao-Yin Wang, Joseph H.W. Lee, Charles S. Melching Beijing Tsinghua University Press [2015] Berlin Springer [2015] VIII, 847 Seiten Illustrationen, Diagramme, Karten 235 mm x 155 mm txt rdacontent n rdamedia nc rdacarrier Gewässerschutz (DE-588)4020830-8 gnd rswk-swf Fluss (DE-588)4131972-2 gnd rswk-swf Flusserosion (DE-588)4748274-6 gnd rswk-swf Hydrodynamik (DE-588)4026302-2 gnd rswk-swf Flussbau (DE-588)4154894-2 gnd rswk-swf Fluss (DE-588)4131972-2 s Hydrodynamik (DE-588)4026302-2 s Flusserosion (DE-588)4748274-6 s Flussbau (DE-588)4154894-2 s Gewässerschutz (DE-588)4020830-8 s DE-604 Lee, Joseph H.W. Verfasser aut Melching, Charles S. Verfasser aut X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3904967&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028824483&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Wang, Zhao-Yin Lee, Joseph H.W Melching, Charles S. River dynamics and integrated river management Gewässerschutz (DE-588)4020830-8 gnd Fluss (DE-588)4131972-2 gnd Flusserosion (DE-588)4748274-6 gnd Hydrodynamik (DE-588)4026302-2 gnd Flussbau (DE-588)4154894-2 gnd |
subject_GND | (DE-588)4020830-8 (DE-588)4131972-2 (DE-588)4748274-6 (DE-588)4026302-2 (DE-588)4154894-2 |
title | River dynamics and integrated river management |
title_auth | River dynamics and integrated river management |
title_exact_search | River dynamics and integrated river management |
title_full | River dynamics and integrated river management Zhao-Yin Wang, Joseph H.W. Lee, Charles S. Melching |
title_fullStr | River dynamics and integrated river management Zhao-Yin Wang, Joseph H.W. Lee, Charles S. Melching |
title_full_unstemmed | River dynamics and integrated river management Zhao-Yin Wang, Joseph H.W. Lee, Charles S. Melching |
title_short | River dynamics and integrated river management |
title_sort | river dynamics and integrated river management |
topic | Gewässerschutz (DE-588)4020830-8 gnd Fluss (DE-588)4131972-2 gnd Flusserosion (DE-588)4748274-6 gnd Hydrodynamik (DE-588)4026302-2 gnd Flussbau (DE-588)4154894-2 gnd |
topic_facet | Gewässerschutz Fluss Flusserosion Hydrodynamik Flussbau |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3904967&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028824483&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT wangzhaoyin riverdynamicsandintegratedrivermanagement AT leejosephhw riverdynamicsandintegratedrivermanagement AT melchingcharless riverdynamicsandintegratedrivermanagement |