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Quasi-3D two-phase model for dam-break flow over movable bed based on a non-hydrostatic depth-integrated model with a dynamic rough wall law

机译:基于具有动态粗糙壁定律的非静水深度综合模型的准3D两阶段动水坝溃坝流模型

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摘要

The assumptions of equilibrium flow conditions neglecting the flow acceleration for vertical velocity distributions and of the equilibrium wall law applied to the bottom boundary condition, in which the flow acceleration is neglected in the vicinity of the bed, are questionable when used to calculate sediment transport for flows that vary rapidly over time and space. Examples of such flows include dam-break flows and flows around structures. This study proposes a two-phase depth-integrated model for large-scale geophysical flow applications involving sediment transport phenomena and bed morphology. The model for the fluid phase is based on the non-hydrostatic quasi-3D method, and uses a dynamic rough wall law that employs continuity and momentum equations for the bottom boundary conditions.It was confirmed that the proposed model reduces to the previous bedload formulae for uniform flow conditions under the weak sediment transport condition. The model was applied in an experiment involving a dambreak flow on a movable bed channel with a suddenly enlarged section. The comparison between the experimental results and the results calculated with the proposed model and previous models demonstrates the validity of the proposed model. The comparison also highlights the advantages of introducing a quasi-3D two-phase model to evaluate vertical velocity distributions and non-equilibrium sediment motions.
机译:平衡流动条件忽略了垂直速度分布的流动加速度的假设,以及适用于底部边界条件的平衡壁定律的假设,其中流动加速度在床层附近被忽略,当用于计算沉积物输运流量随时间和空间而快速变化。这种水流的例子包括溃坝水流和建筑物周围的水流。这项研究提出了一个两阶段深度综合模型,适用于涉及泥沙输送现象和床层形态的大规模地球物理流应用。流体相模型基于非静水准3D方法,并使用了动态粗糙壁定律,该定律采用了连续性和动量方程作为底部边界条件,证实了该模型可以简化为先前的床载量公式弱泥沙输送条件下的均匀流动条件。该模型在涉及断面突然扩大的活动床通道上的溃坝水流的实验中得到了应用。实验结果与所提出的模型和先前模型计算的结果之间的比较证明了所提出的模型的有效性。比较还突出了引入准3D两相模型来评估垂直速度分布和非平衡沉积物运动的优势。

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