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Numerical simulation of flow around rectangular prism

机译:矩形棱柱绕流的数值模拟

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摘要

Using the large eddy simulation (LES), both two-dimensional (2D) and three-dimensional (3D) simulations of the velocity and pressure fields surrounding a rigid rectangular prism at a Reynolds number of 105 are conducted. A finite difference numerical scheme based on a staggered grid is employed. The convection terms are discretized with either QUICK or central difference schemes, while the Leith method is employed for temporal marching. The computed mean velocity along the symmetry line is compared with experimental results as well as numerical results reported by other investigators. It is in closer agreement with the experimental results than other reported numerical results. The mean, the root mean square (RMS) pressure distribution on the prism surface, and the integral forces (lift and drag) are computed. The correlation coefficients of pressure at different chordwise locations around a square prism are also calculated. These simulations are found to be in very good agreement with available experimental results reported in the literature. Both QUICK and central difference schemes are used to discretize the convection terms, and the upwinding effect of the QUICK scheme is investigated. A grid refinement study is also conducted to evaluate the effects of grid size on the simulation results.
机译:使用大涡模拟(LES),对雷诺数为105的刚性矩形棱镜周围的速度和压力场进行了二维(2D)和三维(3D)模拟。采用基于交错网格的有限差分数值方案。对流项可以通过QUICK或中心差分方案离散化,而使用Leith方法进行时间行进。将沿对称线计算的平均速度与实验结果以及其他研究者报告的数值结果进行比较。与其他报道的数值结果相比,它与实验结果更加吻合。计算均值,棱镜表面上的均方根(RMS)压力分布以及积分力(升力和阻力)。还计算了方形棱镜周围不同弦向位置处的压力相关系数。发现这些模拟与文献中报道的可用实验结果非常吻合。 QUICK和中央差分方案都用于离散对流项,并研究了QUICK方案的迎风效应。还进行了网格细化研究,以评估网格大小对模拟结果的影响。

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