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用非结构网格研究旋转振荡圆柱绕流

研究了雷诺数Re=200, 1000, 线速度比\alpha =0.5,

  • 摘要: 研究了雷诺数Re=200, 1000, 线速度比\alpha =0.5,2.0, 4.0, 强迫振荡频率f_s=0.1\sim 2.0情况下的旋转振荡圆柱绕流问题. 通过基于非结构同位网格有限体积法对Navier-Stokes方程进行数值求解. 对流项、扩散项和非恒定项的离散格式均具有二阶精度,利用SIMPLE算法处理压力-速度耦合.计算得到了作用力系数随不同控制参数的变化规律. 通过对升力系数的频谱分析得到自然脱落频率和强迫振荡频率下的作用力振幅. 通过对不同频率作用力幅值的分析,得到频率之间的竞争关系,进而定量地给出了不同尾迹涡脱落模式的分区图.

     

    Abstract: The unsteady flow past a circular cylinder which startstranslating and rotary oscillating impulsively from rest in a viscous fluidis investigated at Reynolds numbers Re=200 and 1000, rectilinear speedratios \alpha =0.5, 2.0 and 4.0, and for forced oscillating frequenciesf_s between 0.1 and 2.0. Numerical solutions of the Navier-Stokesequations are obtained by a finite volume method based on unstructuredcolocated meshes. The discretized schemes of the convective fluxes,diffusive fluxes and unsteadyterm are all of second-order accuracy. The SIMPLE algorithm is adopted todeal with the pressure-velocity coupling. The varieties of forcecoefficients with the control parameter are obtained after the discussion.The amplitudes of lift coefficients at natural shedding frequency and forcedoscillating frequency respectively are determined by the amplitude spectraanalysis, which show clearly the competitive relationship between the twofrequencies. Based on this relationship, the region of the classification offlow structure modes is given at last.

     

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