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Efficient Algorithm for Gradually Varied Flows in Channel Networks
Publisher: American Society of Civil Engineers
Abstract: This paper presents an efficient solution technique for one-dimensional unsteady flow routing through a general channel network system—dendritic, looped, divergent, or any combination of such networks. The finite difference ...
Discussion of “Gradually Varied Flow Computation in Cyclic Looped Channel Networks” by H. Prashanth Reddy and S. Murty Bhallamudi
Publisher: American Society of Civil Engineers
Integrated Physically Based Rainfall-Runoff Model Using FEM
Publisher: American Society of Civil Engineers
Abstract: The current study presents a physically based hydraulic model using derived watershed features to simulate rainfall-runoff response of a catchment. The finite-element concept is used to obtain the time-invariant weighting ...
Efficient Solution Technique for Dendritic Channel Networks Using FEM
Publisher: American Society of Civil Engineers
Abstract: This paper presents an efficient solution algorithm for one-dimensional unsteady flow routing through a dendritic channel network system. The finite element method is used to solve the Saint Venant equations in all branches ...
Closure to “Determination of Watershed Features for Surface Runoff Models” by N. K. Garg and D. J. Sen
Publisher: American Society of Civil Engineers
Determination of Watershed Features for Surface Runoff Models
Publisher: American Society of Civil Engineers
Abstract: This paper presents a new algorithm to identify watershed features like channels, ridges, and overland flow planes from a digitized elevation‐location data of discrete points of a catchment. The lateral inflow to the ...
Optimal Barrage Design based on Subsurface Flow Considerations
Publisher: American Society of Civil Engineers
Abstract: A barrage, a structure across a river to divert flow into a man-made channel, is designed to satisfy surface and subsurface flow considerations. There is, however, no procedure to fix the basic barrage parameters, which ...
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