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COMPUTATIONAL MODELING OF TURBULENT FLOWS OVER ROUGH SURFACES

机译:粗糙表面上湍流的计算模型

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摘要

Turbulent flows over rough surfaces are often encountered in nature and engineering practices and are often difficult to analyze. In this study, combined modeling and computational techniques is involved to investigate such flows over a surface covered with a large-scale roughness pattern. A simplified empirical engineering model is validated by taking area average of the flow field data over the surface. The approach can interpret fluid physics based on the empirical correlation. The area-averaged mean momentum transport resulting from the wall-normal time-averaged velocity component is found to be a significant contributing term into the near-boundary shear stress balance. This makes its behavior different from the flow over a smooth surface. Comparing alternative approaches for estimating the roughness coefficients, it is found that the mass-flow-rate-deficit approach produces superior results. Flow in a channel with one wall covered with an array of cylindrical cavities and the other smooth is used as an example. The extended wall functions, based on the k-ε closure and the simplified engineering model, can be applied for a large-scale roughness pattern. The approach can significantly reduce required computational cost. On the other hand, the small domain periodic computations are needed to produce roughness lengths for a particular surface geometry. This model can develop a general correlation relating the roughness lengths to a surface geometry to aid engineering design.
机译:在自然和工程实践中经常会遇到在粗糙表面上产生湍流的情况,并且通常很难对其进行分析。在这项研究中,结合了建模和计算技术,以研究在覆盖有大规模粗糙度图案的表面上的此类流动。通过获取表面上流场数据的面积平均值来验证简化的经验工程模型。该方法可以基于经验相关性来解释流体物理学。发现由壁法向时间平均速度分量产生的面积平均平均动量传输是近边界剪切应力平衡的重要贡献项。这使其行为不同于在光滑表面上的流动。比较估计粗糙度系数的替代方法,发现质量流率缺乏方法产生了更好的结果。以通道中的流动为例,该通道的一个壁上覆盖有一组圆柱孔,另一壁光滑。基于k-ε闭合和简化的工程模型的扩展墙功能可以应用于大规模的粗糙度图案。该方法可以大大减少所需的计算成本。另一方面,需要小域周期性计算来产生特定表面几何形状的粗糙度长度。该模型可以建立将粗糙度长度与表面几何形状相关的一般关联,以帮助工程设计。

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