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首页> 外文期刊>Journal of hydraulic research >Two-dimensional depth-averaged modelling of dam-break flows over mobile beds
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Two-dimensional depth-averaged modelling of dam-break flows over mobile beds

机译:流动坝上溃坝水流的二维深度平均建模

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摘要

The paper is aimed at the description and validation of a novel two-dimensional depth-averaged simulation tool for highly unsteady discontinuous flows over complex time-evolving geometries. The conceptual model is developed within the shallow-flow framework and features non-equilibrium sediment transport. A fully conservative finite-volume discretization scheme is employed. The treatment of bed-slope source terms ensures that the scheme is well balanced and leads to correct energy losses in discontinuities. Existing laboratory data are used to validate the model and to discuss some of its embedded formulations. Blind-test comparison shows that the model is capable of describing the main dam-break flow and bed morphology features. The solution is shown to be sensitive to the formulations for sediment transport capacity and for adaptation length (A). A better functional relation of A with the Shields parameter is investigated. The quality of the solution is shown to be only marginally improved by the inclusion of turbulent stresses.
机译:本文旨在描述和验证新型的二维深度平均模拟工具,该工具可用于在复杂的随时间变化的几何结构上高度不稳定的不连续流动。该概念模型是在浅流框架内开发的,具有非平衡沉积物传输的特征。采用完全保守的有限体积离散方案。床坡源项的处理可确保方案平衡良好,并导致不连续处的正确能量损失。现有的实验室数据用于验证模型并讨论其一些嵌入式公式。盲测比较表明,该模型能够描述溃坝的主要水流和河床形态特征。溶液对沉积物的输送能力和适应长度(A)均表现出敏感性。研究了A与Shields参数的更好的函数关系。结果表明,通过包含湍流应力,解决方案的质量仅得到了少量改善。

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