Fr. 168.00

Distributed Hydrologic Modeling Using GIS

English · Hardback

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Description

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This book presents a unified approach for modeling hydrologic processes distributed in space and time using geographic information systems (GIS). This Third Edition focuses on the principles of implementing a distributed model using geospatial data to simulate hydrologic processes in urban, rural and peri-urban watersheds. The author describes fully distributed representations of hydrologic processes, where physics is the basis for modeling, and geospatial data forms the cornerstone of parameter and process representation. A physics-based approach involves conservation laws that govern the movement of water, ranging from precipitation over a river basin to flow in a river.
 Global geospatial data have become readily available in GIS format, and a modeling approach that can utilize this data for hydrology offers numerous possibilities. GIS data formats, spatial interpolation and resolution have important effects on the hydrologic simulation of the major hydrologic components of a watershed, and the book provides examples illustrating how to represent a watershed with spatially distributed data along with the many pitfalls inherent in such an undertaking. Since the First and Second Editions, software development and applications have created a richer set of examples, and a deeper understanding of how to perform distributed hydrologic analysis and prediction. This Third Edition describes the development of geospatial data for use in Vflo® physics-based distributed modeling.
 

List of contents

1. Introduction to Physics-based Distributed Hydrology.- 2. Geospatial Data for Hydrology 3 Surface Generation.- 4. Spatial Variability.- 5. Infiltration.- 6. Hydrolic Roughness.- 7. Watersheds and Drainage Networks.- 8. Distributed Precipitation Estimation.- 9. Surface Runoff Model Formulation.- 10. Distributed Model Calibration.- 11. Case Studies in Distributed Hydrology.- 12. Vflo® - Software for Distributed Hydrology.- Index.

Summary

This book presents a unified approach for modeling hydrologic processes distributed in space and time using geographic information systems (GIS). This Third Edition focuses on the principles of implementing a distributed model using geospatial data to simulate hydrologic processes in urban, rural and peri-urban watersheds. The author describes fully distributed representations of hydrologic processes, where physics is the basis for modeling, and geospatial data forms the cornerstone of parameter and process representation. A physics-based approach involves conservation laws that govern the movement of water, ranging from precipitation over a river basin to flow in a river.

 Global geospatial data have become readily available in GIS format, and a modeling approach that can utilize this data for hydrology offers numerous possibilities. GIS data formats, spatial interpolation and resolution have important effects on the hydrologic simulation of the major hydrologic components of a watershed, and the book provides examples illustrating how to represent a watershed with spatially distributed data along with the many pitfalls inherent in such an undertaking. Since the First and Second Editions, software development and applications have created a richer set of examples, and a deeper understanding of how to perform distributed hydrologic analysis and prediction. This Third Edition describes the development of geospatial data for use in Vflo® physics-based distributed modeling.

 

Product details

Authors Baxter E Vieux, Baxter E. Vieux
Publisher Springer Netherlands
 
Languages English
Product format Hardback
Released 01.01.2016
 
EAN 9789402409284
ISBN 978-94-0-240928-4
No. of pages 262
Dimensions 158 mm x 18 mm x 239 mm
Weight 572 g
Illustrations XVI, 262 p. 124 illus., 60 illus. in color.
Series Water Science and Technology Library
Water Science and Technology Library
Subjects Natural sciences, medicine, IT, technology > Biology > Ecology

B, Water, Earth and Environmental Science, Earth Sciences, Hydrology, Hydrology & the hydrosphere, Hydrology/Water Resources, Physical geography, Hydrogeology, Physical geography & topography, Natural disasters, Natural Hazards

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