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Study of the vortex shedding flow around a body near a moving ground

机译:对运动地面附近物体周围涡流的研究

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摘要

The two-dimensional viscous incompressible fluid flow around a circular cylinder near a moving ground is numerically simulated. In a moving ground one eliminates the influence of the ground boundary layer, which is a crucial factor in the numerical simulation of the flow around a body moving in a close vicinity to a flat ground. A Lagrangian mesh-free vortex method is used to calculate global and local quantities of high Reynolds number flow of 1.0×105. This method is modified to take into account the sub-grid scale phenomena through a second-order velocity structure function model adapted to the Lagrangian scheme. In the present algorithm vortices with a Lamb core are generated only on the circular cylinder surface to ensure that the no-slip condition is satisfied and that the circulation is conserved. On the ground it is only sufficient to ensure the impermeability condition. Based on the experimental results available in the literature, the critical drag behaviour was found to be directly related to a global change in the near wake structure of the cylinder.
机译:数值模拟了运动地面附近圆柱周围的二维粘性不可压缩流体流动。在运动的地面上,可以消除地面边界层的影响,这是在靠近平坦地面的物体周围流动的数值模拟中的关键因素。拉格朗日无网格涡旋方法用于计算1.0×105的高雷诺数流的整体和局部数量。该方法经过修改,以通过适用于Lagrangian方案的二阶速度结构函数模型来考虑子网格规模现象。在本算法中,仅在圆柱体表面上产生带有兰姆芯的涡流,以确保满足防滑条件并保持循环。在地面上,仅需确保防渗条件即可。根据文献中提供的实验结果,发现临界阻力行为与气缸近尾流结构的整体变化直接相关。

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