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Research on the vortex structures of flow around surface-mounted obstcales

机译:表面安装障碍物流动涡流结构研究

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The large eddy simulation(LES)method was employed to compute the flow past three types of obstacles on slope surface. The predictions give profile of mean velocity and flow reattachment length. The calculations in present paper are in good agreement with the experimental data. Wake characteristics are analyzed. The computational results show that the horseshoe vortex are formatted at upstream base of obstacles. The wake flow is controlled by the downwash flow on the free end, as well as, the up wash flow in the wake disappears completely. With the angle between the leeward side and the bottom becomes larger, the length of the vortex separation becomes larger, and the scope of vortices greater. The large eddy simulation can obtain almost all the flow pattern observed by the experiments.
机译:使用大涡流模拟(LES)方法来计算斜坡表面上的三种类型的障碍物。预测给出了平均速度和流动重新连接长度的轮廓。本文的计算与实验数据吻合良好。分析了唤醒特性。计算结果表明,马蹄形涡旋在障碍物的上游基础上格式化。唤醒流量由自由端的液压流控制,以及唤醒中的上冲洗流完全消失。随着Leeward侧和底部之间的角度变大,涡流分离的长度变大,并且涡流的范围更大。大涡模拟可以获得实验观察到的几乎所有流动模式。

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