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首页> 外文期刊>International Journal of Heat and Fluid Flow >Turbulent flow around a wall-mounted cube: A direct numerical simulation
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Turbulent flow around a wall-mounted cube: A direct numerical simulation

机译:壁挂式立方体周围的湍流:直接数值模拟

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摘要

An immersed-boundary method was employed to perform a direct numerical simulation (DNS) of flow around a wall-mounted cube in a fully developed turbulent channel for a Reynolds number Re = 5610, based on the bulk velocity and the channel height. Instantaneous results of the DNS of a plain channel flow were used as a fully developed inflow condition for the main channel. The results confirm the unsteadiness of the considered flow caused by the unstable interaction of a horseshoe vortex formed in front of the cube and on both its sides with an arch-type vortex behind the cube. The time-averaged data of the turbulence mean-square intensities, Reynolds shear stresses, kinetic energy and dissipation rate are presented. The negative turbulence production is predicted in the region in front of the cube where the main horseshoe vortex originates.
机译:根据体速度和通道高度,采用沉浸边界方法对完全展开的湍流通道中壁挂式立方体周围的流进行直接数值模拟(DNS),雷诺数Re = 5610。纯通道流的DNS的瞬时结果被用作主通道的充分发展的流入条件。结果证实了由立方体正前方和两侧形成的马蹄形涡旋与立方体后方的弓形旋涡的不稳定相互作用所引起的考虑流动的不稳定。给出了湍流均方强度,雷诺剪切应力,动能和耗散率的时间平均数据。预计在立方体前面主马蹄涡起源的区域会产生负湍流。

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