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Turbulent kinetic energy distribution across the interface between a porous medium and a clear region

机译:穿过多孔介质和透明区域之间的界面的湍动能分布

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For hybrid media, involving both a porous substrate and an unobstructed flow region, difficulties arise due to the proper mathematical treatment given at the macroscopic interface. The literature proposes a jump condition in which shear stresses on both sides of the interface are not of the same value. This paper presents numerical solutions for such hybrid medium, considering here a channel partially filled with a porous layer through which an incompressible fluid flows in turbulent regime. Here, diffusion fluxes of both momentum and turbulent kinetic energy across the interface present a discontinuity in their values, which is based on a certain jump coefficient. Effects of such parameter on mean and turbulence fields around the interface region are numerically investigated. Results indicate that depending on the value of the stress jump parameter, a substantially different structure for the turbulent field is obtained.
机译:对于同时包含多孔基材和畅通流动区域的混合介质,由于在宏观界面处进行了适当的数学处理,因此出现了困难。文献提出了一种跳变条件,其中界面两侧的剪应力不具有相同的值。本文提出了这种混合介质的数值解决方案,其中考虑了部分填充有多孔层的通道,不可压缩流体在湍流状态下流过该通道。在此,动量和湍动能的扩散通量都在界面上呈现不连续性,这是基于某个跳跃系数的。数值研究了这种参数对界面区域周围的平均和湍流场的影响。结果表明,根据应力跳跃参数的值,可获得湍流场的基本不同的结构。

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