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The Development and Analysis of the Horseshoe-Shaped Vortex in the Near-Wall Region of Turbulent Boundary Layer

机译:湍流边界层近壁区域马蹄形涡流的开发与分析

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The low-Reynolds-number full developed turbulent flow in channels was simulated using Large Eddy Simulation with the preconditioned algorithm and the dynamic subgrid-scale model, with a given disturbance in inlet boundary, after a short development section. The inlet Reynolds number based on momentum thickness was 670. The computed results showed good agreement with DNS, which included root mean square fluctuated velocity distribution and average velocity distribution. It was also found that the staggered phenomenon of the coherent structures was caused by subharmonic. The results clearly show the formation and evolution of the horseshoe vortex in the turbulent flow, including the symmetric vortex legs of horseshoe vortex structure and one-side leg of horseshoe vortex. Based on theses, the development of the horseshoe-shaped coherent structures was analyzed in turbulent boundary layer.
机译:使用具有预处理算法和动态亚级模型的大涡模拟模拟通道中的低雷诺数全面发达的湍流,在简短的开发部分之后,在入口边界中具有给定的扰动。基于动量厚度的入口雷诺数为670.计算结果显示出与DNS的良好一致,其中包括根均方波动速度分布和平均速度分布。还发现,相干结构的交错现象是由次谐波引起的。结果清楚地显示了湍流中马蹄涡体的形成和演化,包括马蹄涡结构的对称涡旋腿和马蹄涡的一侧腿。基于这些文字,在湍流边界层中分析了马蹄形相干结构的发展。

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