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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Prediction of Turbulent Flow Over a Flat Plate With a Step Change From a Smooth to a Rough Surface Using a Near-Wall RANS Model
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Prediction of Turbulent Flow Over a Flat Plate With a Step Change From a Smooth to a Rough Surface Using a Near-Wall RANS Model

机译:使用近壁式RAN模型从平滑到粗糙表面的平滑板上的湍流预测湍流

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摘要

The present paper reports a numerical study of fully developed turbulent flow over a flat plate with a step change from a smooth to a rough surface. The Reynolds number based on momentum thickness for the smooth flow was Re theta=5950. The focus of the study was to investigate the capability of the Reynolds-averaged Navier-Stokes (RANS) equations to predict the internal boundary layer (IBL) created by the flow configuration. The numerical solution used a two-layer k-epsilon model to implement the effects of surface roughness on the turbulence and mean flow fields via the use of a hydrodynamic roughness length y0. The prediction for the mean velocity field revealed a development zone immediately downstream of the step in which the mean velocity profile included a lower region affected by the surface roughness below and an upper region with the characteristics of the smooth-wall boundary layer above. In this zone, both the turbulence kinetic energy and Reynolds shear stress profiles were characterized by a significant reduction in magnitude in the outer region of the flow that is unaffected by the rough surface. The turbulence kinetic energy profile was used to estimate the thickness of the IBL, and the resulting growth rate closely matched the experimental results. As such, the IBL is a promising test case for assessing the ability of RANS models to predict the discrete roughness configurations often encountered in industrial and environmental applications.
机译:本文报告了在平板上完全发育的湍流的数值研究,从平滑到粗糙表面变化。基于流动流动的动量厚度的雷诺数是Rea = 5950。该研究的重点是研究雷诺平均Navier-Stokes(RANS)方程的能力来预测由流配置产生的内部边界层(IBL)。数值溶液使用两层K-Epsilon模型,通过使用流体动力粗糙度Y0来实现表面粗糙度对湍流和平均流场的影响。平均速度场的预测揭示了紧接在下游的开发区域,其中平均速度分布包括受下面的表面粗糙度的下部区域和上面具有上方光滑壁边界层的特性的上部区域。在该区域中,湍流动能和雷诺剪切应力分布的特征在于,在不受粗糙表面不受影响的流动的外部区域中的大小显着降低。湍流动能曲线用于估计IB1的厚度,并且所得的生长速率与实验结果紧密匹配。因此,IBL是一个有希望的测试案例,用于评估RAN模型预测在工业和环境应用中经常遇到的离散粗糙度配置的能力。

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