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A semi-analytical method for predicting the outflow hydrograph due to dam-break in natural valleys
Institution:1. Department of Civil and Building Engineering, and Architecture (ICEA), Università Politecnica delle Marche, Italy;2. Department of Civil, Environmental and Architectural Engineering (ICEA), University of Padova, Italy;1. Beijing Key Laboratory for Optical Materials and Photonic Devices, Department of Chemistry, Capital Normal University, Beijing 100048, PR China;2. Department of Chemistry, Northeast Normal University, Changchun 130024, Jilin, PR China;1. LEN Technologies, Oak Hill, VA, USA;2. Department of Civil Engineering, The University of Texas at Arlington, Arlington, TX 76019-0308, USA
Abstract:The paper presents a semi-analytical method for predicting the flow rate hydrograph due to a hypothetical sudden and total dam failure in a natural valley. The method generalizes the approach proposed by Hunt for the dam-break problem in a rectangular frictionless sloping channel to a valley with a cross-section area expressed by a power-law function of water depth, in order to take into account the most common shapes of natural valleys. The parameters of the deriving model can be set by exploiting data usually available concerning the dam section geometry and the reservoir storage-depth curve. The application of the technique to three different reservoirs is discussed. The results show that the flow rate hydrographs obtained at the dam site agree with the ones calculated by means of a finite volume numerical code based on two-dimensional shallow water equations. The method requires moderate computational and data collecting effort, so it can be regarded as a useful alternative to other procedures commonly adopted in the practice.
Keywords:Dam failure  Outflow hydrograph  Free surface flow  Numerical modeling  Hydraulic hazard
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