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A numerical investigation of two-degree-of-freedom VIV of a circular cylinder using the modified turbulence model

机译:基于改进湍流模型的圆柱二自由度VIV数值研究

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摘要

To simulate the fluctuating lift and resistance of the cylinder in vortex-induced vibration (VIV) accurately, the shear-stress transport (SST) turbulence model is modified in this paper. Then the correctness of the modified model is verified in the flow around a circular cylinder. After that, the numerical simulation of vortex-induced vibration of a cylinder with two degrees of freedom is carried out by using the embedded program of Open Foam under three different initial conditions which are uniform acceleration, uniform deceleration and uniform velocity respectively. After the comparison and analyses of the vibration amplitude, frequency, fluid force, motion locus and vortex shedding, we find that there are some differences in the results obtained under three initial conditions. By contrast, the results of uniform acceleration condition are more accurate. Besides, the hysteresis mechanism can be analysed on the basis of the vortex shedding characteristics of uniform acceleration and deceleration. In general, the initial condition has a great influence on the numerical simulation of the vortex-induced vibration, and the validity of the modified turbulence model is further verified in the simulation.
机译:为了精确地模拟汽缸在涡激振动(VIV)中的波动升力和阻力,本文修改了剪切应力传递(SST)湍流模型。然后,在圆柱绕流中验证了修改后模型的正确性。然后,利用Open Foam的嵌入式程序,在三种不同的初始条件下,分别是匀加速,匀减速和匀速度,对具有两个自由度的圆柱体的涡激振动进行了数值模拟。通过对振动幅度,频率,流体力,运动轨迹和涡旋脱落的比较和分析,我们发现在三种初始条件下获得的结果存在一些差异。相比之下,均匀加速条件的结果更准确。此外,可以基于均匀加速和减速的涡旋脱落特性来分析磁滞机理。通常,初始条件对涡激振动的数值模拟有很大的影响,并且在仿真中进一步验证了改进的湍流模型的有效性。

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