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Depth-averaged modeling of free surface flows in open channels with emerged and submerged vegetation

机译:露水和淹没植被的明渠自由表面流的深度平均建模

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The resistance induced by vegetation on the flow in a watercourse should be considered in projects of watercourse management and river restoration. Depth-averaged numerical model is an efficient tool to study this problem. In this study, a depth-averaged model using the finite volume method on a staggered curvilinear grid and the SIMPLEC algorithm for numerical solution is developed for simulating the hydrodynamics of free surface flows in watercourses with vegetation. For the model formulation the vegetation resistance is treated as a momentum sink and represented by a Manning type equation, and turbulence is parameterized by the k-ε equations. An analytical equation is derived to represent the resistance induced by submerged vegetation by an equivalent Manning roughness coefficient. Numerical simulation is carried out for the flow in an open channel with a 180° bend, and the flow in a curved open channel partly covered by emerged vegetation, as well as the flow in a straight trapezoidal channel with submerged vegetation. The agreement between the computed results and the measured data is generally good, showing that the resistance due to emerged or submerged vegetation can be represented accurately by the Manning roughness equation. The computed results demonstrate that the depth-averaged modeling is a reasonable and efficient tool to study flows in watercourses with vegetations.
机译:在河道管理和河流修复项目中应考虑植被对河道水流的阻力。深度平均数值模型是研究此问题的有效工具。在这项研究中,使用有限体积方法在交错曲​​线网格上建立了深度平均模型,并建立了SIMPLEC数值解算法,用于模拟有植被的河道中自由表面流的水动力。对于模型公式,将植被阻力视为动量汇,并由曼宁型方程表示,而湍流由k-ε方程参数化。推导了一个解析方程,用等效的曼宁粗糙度系数表示淹没植被引起的阻力。对弯成180°的明渠中的水流,弯曲的明渠中的水流(部分被新兴植被覆盖)以及直行梯形渠中的水淹水进行了数值模拟。计算结果与实测数据之间的一致性通常很好,表明由出现或淹没的植被引起的阻力可以用曼宁粗糙度方程精确表示。计算结果表明,深度平均建模是研究植被河道中水流的一种合理有效的工具。

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