Computational River Dynamics
Comprehensive text on the fundamentals of modeling flow and sediment transport in rivers treating both physical principles and numerical methods for various degrees of complexity. Includes 1-D, 2-D (both depth- and width-averaged) and 3-D models, as well as the integration and coupling of these mode...
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Format: | Book |
Language: | English |
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London
Taylor & Francis
2008
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Online Access: | Click Here to View Status and Holdings. |
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041 | 0 | # | |a eng |
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100 | 1 | # | |a Wu, Weiming |e author |
245 | 1 | 0 | |a Computational River Dynamics |c Weiming Wu |
264 | # | 1 | |a London |b Taylor & Francis |c 2008 |
264 | # | 4 | |c ©2008 |
300 | # | # | |a xiii, 494 pages |b illustrations |c 26 cm |
336 | # | # | |a text |2 rdacontent |
337 | # | # | |a unmediated |2 rdamedia |
338 | # | # | |a volume |2 rdacarrier |
504 | # | # | |a Includes bibliographical references (pages [465]-487) and index |
520 | # | # | |a Comprehensive text on the fundamentals of modeling flow and sediment transport in rivers treating both physical principles and numerical methods for various degrees of complexity. Includes 1-D, 2-D (both depth- and width-averaged) and 3-D models, as well as the integration and coupling of these models. Contains a broad selection of numerical methods for open-channel flows, such as the SIMPLE(C) algorithms on staggered and non-staggered grids, the projection method, and the stream function and vorticity method. The state-of-the-art in sediment transport modeling approaches is described, such as non-equilibrium transport models, non-uniform total-load transport models, and semi-coupled and coupled procedures for flow and sediment calculations. Sediment transport theory is discussed and many newly-developed, non-uniform sediment transport formulae are presented. The many worked examples illustrate various conditions, such as reservoir sedimentation; channel erosion due to dam construction; channel widening and meandering; local scour around in-stream hydraulic structures; vegetation effects on channel morphodynamic processes; cohesive sediment transport; dam-break fluvial processes and contaminant transport. Recommended as a reference guide for river and hydraulic engineers and as a course text for teaching sediment transport modeling, computational free-surface flow, and computational river dynamics to senior students |
650 | # | 0 | |a Sediment transport |
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