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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 1D, 2D (both depth and widthaveraged) and 3D models, as well as the integration and coupling of these models. Contains a broad selection of numerical methods for openchannel flows, such as the SIMPLE(C) algorithms on staggered and nonstaggered grids, the projection method, and the stream function and vorticity method. The stateoftheart in sediment transport modeling approaches is described, such as nonequilibrium transport models, nonuniform totalload transport models, and semicoupled and coupled procedures for flow and sediment calculations. Sediment transport theory is discussed and many newlydeveloped, nonuniform 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 instream hydraulic structures; vegetation effects on channel morphodynamic processes; cohesive sediment transport; dambreak 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 freesurface flow, and computational river dynamics to senior students.
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