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Numerical investigation of the vortex-induced vibration of an elastically mounted circular cylinder at high Reynolds number (Re = 104) and low mass ratio using the RANS code

机译:使用RANS代码对高雷诺数(Re = 104)和低质量比的弹性安装圆柱体的涡激振动进行数值研究

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摘要

This study numerically investigates the vortex-induced vibration (VIV) of an elastically mounted rigid cylinder by using Reynolds-averaged Navier–Stokes (RANS) equations with computational fluid dynamic (CFD) tools. CFD analysis is performed for a fixed-cylinder case with Reynolds number (Re) = 104 and for a cylinder that is free to oscillate in the transverse direction and possesses a low mass-damping ratio and Re = 104. Previously, similar studies have been performed with 3-dimensional and comparatively expensive turbulent models. In the current study, the capability and accuracy of the RANS model are validated, and the results of this model are compared with those of detached eddy simulation, direct numerical simulation, and large eddy simulation models. All three response branches and the maximum amplitude are well captured. The 2-dimensional case with the RANS shear–stress transport k-w model, which involves minimal computational cost, is reliable and appropriate for analyzing the characteristics of VIV.
机译:这项研究通过使用雷诺平均Navier–Stokes(RANS)方程和计算流体动力学(CFD)工具,对弹性安装的刚性圆柱体的涡激振动(VIV)进行了数值研究。对于具有雷诺数(Re)= 10 4 的固定气缸箱以及在横向方向上自由振荡且具有低质量阻尼比的气缸进行CFD分析,并且Re = 10 4 。以前,已经对3维且价格相对昂贵的湍流模型进行了类似的研究。在当前的研究中,验证了RANS模型的能力和准确性,并将该模型的结果与分离涡模拟,直接数值模拟和大涡模拟模型进行了比较。三个响应分支和最大幅度都可以很好地捕获。具有RANS剪应力传输k-w模型的二维情况,涉及的计算成本最小,是可靠的,适合分析VIV的特征。

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