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Simulation of the incompressible viscous cross-flow around an oscillating circular cylinder via the random vortex method

机译:通过随机涡流法仿真围绕振荡圆柱体周围的不可压缩粘性交叉流动

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The random vortex method has been used to simulate the laminar incompressible flow around a circular cylinder oscillating transversely to the flow. The vorticity in the flow is represented by a number of discrete point vortices, which are givenrandom walks to simulate the effect of viscous diffusion. The vortices are created on the cylinder surface to satisfy the no-slip boundary condition, they are convected using an inviscid flow assumption, where the induced velocities on each of the pointvortices is obtained using a vortex-in-cell method. Using a time marching algorithim based on the above procedure, the flow around stationary and oscillating circular cylinders is investigated. In particular, the effect of frequency and magnitude of theforced oscillation on the dynamic force coefficients is considered. The results obtained are compared with other numerical solutions and with available experimental data. In general, both the qualitative and quantitative agreement between the presentnumerical simulation and other numerical results and experiments is good.
机译:随机涡流方法已被用于模拟围绕圆柱体横向于流动振荡的层状不可压缩流。流程中的涡度由许多离散点涡旋表示,这是赋予粘性扩散的效果。在汽缸表面上产生涡流以满足无滑移边界条件,它们使用涡流的流动假设进行对流,其中使用涡旋内方法获得每个尖端的感应速度。使用基于上述过程的时间游行allorithim,研究了静止和摆动圆柱圆柱的流动。特别地,考虑了频率和幅度的频率和大小对动态力系数的影响。获得的结果与其他数值溶液和可用的实验数据进行比较。一般而言,当前模拟和其他数值结果和实验之间的定性和定量协议都是好的。

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