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Rough River Outlet Works Physical Model Study
The US Army Corps of Engineers, Louisville District, requested the support and assistance of the US Army Engineer Research and Development Center, Coastal and Hydraulics Laboratory (CHL), in the evaluation of the hydraulic performance of the replacement Outlet Works for Rough River Dam. To support the design effort, CHL constructed a 1:25.85 scale physical model. The proposed features of the model in the domain are the curved approach channel, intake structure, transition, curved conduit, stilling basin, concrete apron, and retreat channel. Tests performed to evaluate the hydraulic performance illuminated a few design concerns. To address these issues, several key design changes were made. These included the retreat channel slope, end sill design, and transition design.
Rough River Outlet Works Physical Model Study
The US Army Corps of Engineers, Louisville District, requested the support and assistance of the US Army Engineer Research and Development Center, Coastal and Hydraulics Laboratory (CHL), in the evaluation of the hydraulic performance of the replacement Outlet Works for Rough River Dam. To support the design effort, CHL constructed a 1:25.85 scale physical model. The proposed features of the model in the domain are the curved approach channel, intake structure, transition, curved conduit, stilling basin, concrete apron, and retreat channel. Tests performed to evaluate the hydraulic performance illuminated a few design concerns. To address these issues, several key design changes were made. These included the retreat channel slope, end sill design, and transition design.
Rough River Outlet Works Physical Model Study
J. A. Sharp (Autor:in) / L. M. Williams (Autor:in) / D. B. Bryant (Autor:in) / J. P. Allgeier (Autor:in) / K. L. Pigg (Autor:in) / G. L. Bell (Autor:in) / D. W. Moses (Autor:in)
2021
117 pages
Report
Keine Angabe
Englisch
Hydrology & Limnology , Civil Engineering , Army corps of engineers , Civil engineering , Classification , Computational fluid dynamics , Concrete , Construction , Contracts , Engineering , Engineers , Fabrication , Failure mode and effect analysis , Fluid dynamics , Froude number , Materials , Measurement , Models , Stilling basins
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