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Energy dissipation and hydrodynamic forces of aerated flow over macro-roughness linings for overtopped embankment dams

Publish Year: 1383
Type: Conference paper
Language: English
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HDRS_22

Index date: 7 December 2005

Energy dissipation and hydrodynamic forces of aerated flow over macro-roughness linings for overtopped embankment dams abstract

A promising solution to control overtopping and limit the risk of damage at the toe of an embankment dam may consist in dissipating a significant part of the flow energy along the chute by macro-roughness linings. In fact, compared to a smooth chute, the drag form effects due to the macro-roughness elements increase considerably the flow resistance. In order to define an efficient macro-roughness system, not only the energy dissipation needs to be estimated but also the hydrostatic and hydrodynamic forces on the macro-roughness elements.With this aim, an experimental research is conducted at the Laboratory of Hydraulic Constructions (LCH-EPFL), in order to define the aerated flow characteristics for a stepped flume. The presented results allow to compare the energy dissipation efficiency of conventional steps, steps equipped with endsills and steps equipped with alternate rectangular blocks for a 30◦ sloping chute, as well as to estimate the forces on the latter lining.

Energy dissipation and hydrodynamic forces of aerated flow over macro-roughness linings for overtopped embankment dams authors

S. André

Laboratory of Hydraulic Constructions (LCH), Federal Institute of Technology (EPFL), Lausanne, Switzerland

J.-L. Boillat

Laboratory of Hydraulic Constructions (LCH), Federal Institute of Technology (EPFL), Lausanne, Switzerland

A.J. Schleiss

Laboratory of Hydraulic Constructions (LCH), Federal Institute of Technology (EPFL), Lausanne, Switzerland

J. Matos

Technical University of Lisbon, IST, Portugal

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