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Large eddy simulation of free surface turbulent flow in partly vegetated open channels

机译:部分植被明渠中自由表面湍流的大涡模拟

摘要

A large eddy simulation (LES) model has been developed to simulate the hydrodynamic behaviour of turbulent flow in an open channel with a domain of vegetation. Vegetation is considered as an internal source of resistant force and turbulence energy. The model is modified from the LES model of Li and Wang (International Journal for Numerical Methods in Fluids 2000; 34), and is distinctive in that the subgrid scale turbulence is parameterized by a k-l model. The length scale of turbulence l is proportional to the grid size and the turbulence energy k is obtained from the solution of the turbulence energy transport equation. An operator splitting method, which splits the solution procedure into advection, diffusion and pressure propagation steps, is employed so that different numerical schemes can be used for the solution of different physical processes. The model has been applied to simulate open channel flow with transverse shear produced by vegetation drag. Some organized large eddies were found in the interface between the vegetated and non-vegetated regions and the organized structure clearly has a life cycle. At the interface the transverse velocity profile exhibits a steep gradient, which induces significant mass and momentum exchange, acts as a source of vorticity, and generates high Reynolds stresses. The logarithmic vertical velocity variation becomes uniform in the vegetated domain. The agreement between the numerical results and the experimental data (Tsujimoto and Kitamura, KHL Progressive Report '92, Hydrology Laboratory, Kanazawa University, Japan, 1992; 21) is satisfactory. The present k-l LES model is proven to be a useful tool for engineering applications, as it can simulate the dynamic development of large eddies and the associated intermittent turbulence.
机译:已开发出大型涡流模拟(LES)模型,以模拟具有植被域的明渠中湍流的水动力行为。植被被认为是抵抗力和湍流能量的内部来源。该模型是根据Li和Wang的LES模型(国际流体数值方法杂志,2000年; 34)修改而来的,其独特之处在于,通过k-1模型对子网格规模的湍流进行参数化。湍流l的长度尺度与网格尺寸成正比,并且湍流能量k从湍流能量传输方程的解中获得。采用算子拆分方法,该方法将求解过程分为对流,扩散和压力传播步骤,因此可以将不同的数值方案用于不同的物理过程的求解。该模型已被用于模拟植被阻力产生的横向剪切的明渠水流。在植被区和非植被区之间的界面中发现了一些有组织的大涡流,有组织的结构显然具有生命周期。在界面处,横向速度分布呈现出陡峭的梯度,从而引起大量的质量和动量交换,充当涡旋源,并产生较高的雷诺应力。在植被域中,对数垂直速度变化变得均匀。数值结果与实验数据(Tsujimoto和Kitamura,KHL Progressive Report '92,日本金泽大学水文实验室,1992; 21)之间的一致性是令人满意的。目前的k-1 LES模型被证明是工程应用的有用工具,因为它可以模拟大涡旋的动态发展以及相关的间歇湍流。

著录项

  • 作者

    Su X; Li CW;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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