首页> 外文期刊>International Journal of Heat and Mass Transfer >Application of RES methods for computation of hydrodynamic flows by an example of a 2D flow past a circular cylinder for Re = 5-200
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Application of RES methods for computation of hydrodynamic flows by an example of a 2D flow past a circular cylinder for Re = 5-200

机译:RES方法在流体动力学流量计算中的应用,以Re = 5-200时通过圆柱的二维流为例

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摘要

An effective method of simulation of multidimensional hydrodynamic problems for small Mach numbers is described. The method is based on utilization of FFT (fast Fourier transform) for solving the Poisson equation on a rectangular grid in domains with complicated geometry (particularly multi-linked). Simulation was performed with zero numerical viscosity. The speed of calculation of the Poisson equation is 1-2 orders of magnitude higher compared to that of the calculation based on standard iteration techniques. Systematic simulations of a 2D flow past a cylinder in the channel with permeable and impermeable boundaries were performed. The critical values of the Re number of the onset of vortex movement (Re_0) and loss of stability of steady (Re_1) and two-dimensional movement (Re_2) are estimated with high accuracy for the two cases mentioned.
机译:描述了一种针对小马赫数的多维流体动力学问题的有效仿真方法。该方法基于FFT(快速傅立叶变换)的使用,用于在几何形状复杂(特别是多链接)的区域中的矩形网格上求解泊松方程。在零数值粘度下进行模拟。与基于标准迭代技术的计算相比,泊松方程的计算速度要高1-2个数量级。系统地模拟了二维流过具有可渗透和不可渗透边界的通道中的圆柱体的过程。对于上述两种情况,以很高的精度估算了涡旋运动开始的Re数(Re_0)和稳定损失(Re_1)和二维运动(Re_2)的临界值。

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