Distributed hydrologic modeling using GIS:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Dordrecht
Springer
[2016]
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Ausgabe: | Third edition |
Schriftenreihe: | Water science and technology library
volume 74 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | xvi, 262 Seiten Illustrationen |
ISBN: | 9789402409284 |
Internformat
MARC
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Datensatz im Suchindex
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adam_text | Titel: Distributed hydrologic modeling using GIS
Autor: Vieux, Baxter E
Jahr: 2016
Contents
1 Introduction to Physics-Based Distributed Hydrology......................1
1.1 Introduction................................................................................1
1.2 Model Classification....................................................................3
1.3 Geospatial Data for Hydrology....................................................9
1.4 Surface Generation......................................................................10
1.5 Spatial Resolution and Information Content................................11
1.6 Infiltration....................................................................................11
1.7 Hydraulic Roughness..................................................................12
1.8 Watersheds and Drainage Networks............................................13
1.9 Distributed Precipitation Estimation............................................13
1.10 Surface Runoff Model Formulation..............................................14
1.11 Distributed Model Calibration......................................................16
1.12 Case Studies in Distributed Hydrology........................................16
1.13 Yfio®—Software for Distributed Hydrology................................17
1.14 Summary....................................................................................17
References..............................................................................................18
2 Geospatial Data for Hydrology............................................................21
2.1 Introduction................................................................................21
2.2 Map Scale and Spatial Detail......................................................22
2.3 Georeferenced Coordinate Systems..............................................23
2.4 Map Projections..........................................................................25
2.5 Data Representation....................................................................29
2.5.1 Metadata........................................................................29
2.5.2 Topographic Representation..........................................30
2.6 Watershed Delineation................................................................35
2.6.1 Algorithms for Delineating Watersheds..........................36
2.6.2 Problems with Flat Areas..............................................37
xiii
38
40
41
41
43
43
44
46
48
54
61
62
65
65
71
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116
120
123
126
128
130
2.7 Soil Classification...........................
2.8 Land Use/Cover Classification.................
2.9 Summary.................................
References......................................
Surface Generation..............................
3.1 Introduction...............................
3.2 Interpolation................................
3.2.1 Inverse Distance Weighted Interpolation
3.2.2 Kriging.............................
3.2.3 Spline..............................
3.3 Summary..................................
References.......................................
Spatial Variability Measuring Information Content.....
4.1 Introduction................................
4.2 Information Content..........................
4.3 Fractal Interpretation..........................
4.4 DEM Resolution Effects.......................
4.5 Summary..................................
References.......................................
Infiltration......................................
5.1 Introduction................................
5.2 Approaches to Infiltration Modeling..............
5.3 Green-Ampt Infiltration........................
5.3.1 Parameter Estimation...................
5.3.2 Parameter Uncertainty..................
5.4 Summary..................................
References.......................................
Hydraulic Roughness.............................
6.1 Introduction................................
6.2 Hydraulics of Surface Runoff....................
6.3 Watershed Applications........................
6.4 Summary...................................
References........................................
Watersheds and Drainage Networks.................
7.1 Introduction................................
7.2 Drainage Network Extraction...................
7.2.1 Sensitivity to Drainage Network Composition
7.2.2 Resolution-Dependent Effects............
7.2.3 Constraining Drainage Direction..........
7.3 Summary..................................
References.......................................
Contents xv
8 Distributed Precipitation Estimation..................................................133
8.1 Introduction................................................................................133
8.2 Rain Gauge Estimation of Rainfall..............................................133
8.3 Radar Estimation of Precipitation................................................142
8.3.1 Rainfall Drop Size Distributions....................................144
8.3.2 Z-R Relationships..........................................................146
8.3.3 Radar Power Differences................................................148
8.3.4 Radar Bias Adjustment..................................................149
8.3.5 WSR-88D Radar Characteristics....................................152
8.3.6 WSR-88D Precipitation Processing Stream....................154
8.4 Input for Hydrologie Modeling....................................................157
8.5 Summary....................................................................................160
References..............................................................................................161
9 Surface Runoff Model Formulation....................................................165
9.1 Introduction................................................................................165
9.2 Mathematical Formulation..........................................................169
9.2.1 Numerical Solution........................................................171
9.2.2 Grid Resolution Effects..................................................173
9.3 Surface Runoff Modeling Example..............................................173
9.4 Time-Dependent Solution............................................................177
9.5 Rainfall Excess Determination....................................................177
9.6 Subsurface Flow..........................................................................179
9.7 Subsurface and Surface Water Balance........................................182
9.8 Summary....................................................................................184
References..............................................................................................184
10 Distributed Model Calibration............................................................189
10.1 Introduction................................................................................189
10.2 Calibration Approach..................................................................191
10.3 Distributed Model Calibration.......................................193
10.3.1 Parameter Adjustment....................................................194
10.3.2 Cost Functions................................................................197
10.4 Parameter Search Algorithms......................................................201
10.4.1 Forward Model..............................................................202
10.4.2 Inverse Model................................................................202
10.5 Calibration Example....................................................................205
10.6 Summary....................................................................................206
References..............................................................................................207
11 Case Studies in Distributed Hydrology..............................................211
11.1 Introduction................................................................................211
11.2 Case Study I—Reservoir Inflow Forecasting..............................212
11.2.1 Hydrometeorological System..........................................214
11.2.2 Model Parameter Adjustment........................................216
11.3 Case Study II—Urban Flood Forecasting....................................217
xv¡ Contents
11.3.1 Basin Characteristics........................... 218
11.4 Case Study HI—Climate Change Impact Assessment......... 220
11.4.1 Precipitation Inputs............................ 221
11.4.2 Potential Evapotranspiration..................... 221
11.4.3 Hydrologie Modeling As-IP Climate
Has Changed..................................................................222
11.4.4 Historic Period Calibration............................................224
11.4.5 Climate Change Perturbation..........................................226
11.4.6 Hydrologie Analysis......................................................230
11.5 Summary....................................................................................232
References..............................................................................................233
12 Yflo®—Software for Distributed Hydrology......................................235
12.1 Introduction................................................................................235
12.2 Building Watershed Models........................................................238
12.3 Precipitation Input......................................................................238
12.3.1 Design Storm Analysis..................................................238
12.3.2 Continuous Simulation..................................................241
12.4 Pipes Extension..........................................................................245
12.5 Inundation Analyst......................................................................245
12.6 Model Feature Summary..............................................................247
12.6.1 Cell Types......................................................................249
12.6.2 Network Statistics..........................................................250
12.6.3 Channel Routing............................................................253
12.6.4 Basedow........................................................................253
12.6.5 Infiltration......................................................................254
12.6.6 Precipitation Input Format..............................................254
12.6.7 Calibration......................................................................255
12.7 Yflo® Real-time..........................................................................256
12.8 Data Requirements......................................................................257
12.9 Summary....................................................................................258
References..............................................................................................258
Index...................................................... 261
|
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author | Vieux, Baxter E. |
author_facet | Vieux, Baxter E. |
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author_sort | Vieux, Baxter E. |
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ctrlnum | (OCoLC)959552352 (DE-599)HBZHT019084200 |
discipline | Geowissenschaften |
edition | Third edition |
format | Book |
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indexdate | 2024-07-10T07:34:23Z |
institution | BVB |
isbn | 9789402409284 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-029172526 |
oclc_num | 959552352 |
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physical | xvi, 262 Seiten Illustrationen |
publishDate | 2016 |
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spelling | Vieux, Baxter E. Verfasser aut Distributed hydrologic modeling using GIS Baxter E. Vieux Third edition Dordrecht Springer [2016] xvi, 262 Seiten Illustrationen txt rdacontent n rdamedia nc rdacarrier Water science and technology library volume 74 Modell (DE-588)4039798-1 gnd rswk-swf Geoinformationssystem (DE-588)4261642-6 gnd rswk-swf Hydrologie (DE-588)4026309-5 gnd rswk-swf Geoinformationssystem (DE-588)4261642-6 s Hydrologie (DE-588)4026309-5 s Modell (DE-588)4039798-1 s DE-604 Water science and technology library volume 74 (DE-604)BV000625426 74 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029172526&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Vieux, Baxter E. Distributed hydrologic modeling using GIS Water science and technology library Modell (DE-588)4039798-1 gnd Geoinformationssystem (DE-588)4261642-6 gnd Hydrologie (DE-588)4026309-5 gnd |
subject_GND | (DE-588)4039798-1 (DE-588)4261642-6 (DE-588)4026309-5 |
title | Distributed hydrologic modeling using GIS |
title_auth | Distributed hydrologic modeling using GIS |
title_exact_search | Distributed hydrologic modeling using GIS |
title_full | Distributed hydrologic modeling using GIS Baxter E. Vieux |
title_fullStr | Distributed hydrologic modeling using GIS Baxter E. Vieux |
title_full_unstemmed | Distributed hydrologic modeling using GIS Baxter E. Vieux |
title_short | Distributed hydrologic modeling using GIS |
title_sort | distributed hydrologic modeling using gis |
topic | Modell (DE-588)4039798-1 gnd Geoinformationssystem (DE-588)4261642-6 gnd Hydrologie (DE-588)4026309-5 gnd |
topic_facet | Modell Geoinformationssystem Hydrologie |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029172526&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000625426 |
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