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Modeling flows over gravel beds by a drag force method and a modified S-A turbulence closure

机译:通过阻力法和改进的S-A湍流闭合模型模拟砾石床上的流动

摘要

A double-averaged Navier-Stokes equations (DANS) model has been developed for depth-limited open channel flows over gravels. Three test cases are used to validate the model: an open-channel flow over a densely packed gravel bed with small-scale uniform roughness (D/d 50∼13, d 50=median diameter of roughness elements, D=water depth), open-channel flows over large-scale sparsely distributed roughness elements (D/Δ∼2.3-8.7, Δ=roughness height) and steep slope gravel-bed river flows with D/d 50∼7-25. Various methods of treatment of the gravel-induced resistance effect have been investigated. The results show that the wall function approach (WFA) is successful in simulating flows over small gravels but is not appropriate for large gravels since the vertical profile of the longitudinal velocity does not follow the logarithmic-linear relationship. The drag force method (DFM) performs better but the non-logarithmic velocity distribution generated by sparsely distributed gravels cannot be simulated accurately. Noting that the turbulence length scale within the gravel layer is governed by the gravel size, the DANS model incorporating the DFM and a modified Spalart-Allmaras (S-A) turbulence closure is proposed. The turbulence length scale parameter in the S-A model is modified to address the change in the turbulence structure within the gravel layer. The computed velocity profiles agree well with the corresponding measured profiles in all cases. Particularly, the model reproduces the S-shape velocity profile for sparsely distributed large size roughness elements. The modeling methodology is robust and can be easily integrated into the existing numerical models.
机译:已经开发了双重平均的Navier-Stokes方程(DANS)模型,用于砾石上有限深度的明渠水流。使用三个测试案例来验证模型:密实的砾石床上的裸露通道流动,具有小尺度均匀的粗糙度(D / d 50〜13,d 50 =粗糙度元素的中值直径,D =水深),大型稀疏分布的粗糙单元(D /Δ〜2.3-8.7,Δ=粗糙度高度)上的明渠水流和D / d 50〜7-25的陡坡砾石床河水流。已经研究了多种治疗砾石引起的抗药性的方法。结果表明,墙函数法(WFA)在模拟小砾石上的流动方面是成功的,但不适用于大砾石,因为纵向速度的垂直轮廓不遵循对数线性关系。阻力法(DFM)的效果更好,但稀疏分布的砾石产生的非对数速度分布无法准确模拟。注意到砾石层内的湍流长度尺度是由砾石尺寸决定的,提出了结合了DFM和改进的Spalart-Allmaras(S-A)湍流闭合的DANS模型。修改了S-A模型中的湍流长度尺度参数,以解决砾石层内湍流结构的变化。在所有情况下,计算出的速度曲线都与相应的测量曲线非常吻合。特别是,该模型为稀疏分布的大尺寸粗糙度元素复制了S形速度分布图。建模方法很健壮,可以轻松地集成到现有的数值模型中。

著录项

  • 作者

    Zeng C; Li CW;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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