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Low Mass-Damping Vortex-Induced Vibrations of a Single Cylinder at Moderate Reynolds Number

机译:雷诺数适中的单个气缸的低质量阻尼涡激振动。

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摘要

The feasibility and accuracy of large eddy simulation is investigated for the case of three-dimensional unsteady flows past an elastically mounted cylinder at moderate Reynolds number. Although these flow problems are unconfined, complex wake flow patterns may be observed depending on the elastic properties of the structure. An iterative procedure is used to solve the structural dynamic equation to be coupled with the Navier–Stokes system formulated in a pseudo-Eulerian way. A moving mesh method is involved to deform the computational domain according to the motion of the fluid structure interface. Numerical simulations of vortex-induced vibrations are performed for a freely vibrating cylinder at Reynolds number 3900 in the subcritical regime under two low mass-damping conditions. A detailed physical analysis is provided for a wide range of reduced velocities, and the typical three-branch response of the amplitude behavior usually reported in the experiments is exhibited and reproduced by numerical simulation.
机译:对于三维非定常流经过中等弹性雷诺数的弹性安装圆柱体的情况,研究了大涡模拟的可行性和准确性。尽管这些流动问题是不受限制的,但根据结构的弹性特性,可能会观察到复杂的尾流形态。迭代过程用于求解结构动力学方程,并与拟欧拉式的Navier-Stokes系统耦合。涉及移动网格方法以根据流体结构界面的运动使计算域变形。在两个低质量阻尼条件下,对亚临界状态下雷诺数3900的自由振动圆柱体进行了涡激振动的数值模拟。提供了详细的物理分析,适用于各种降低的速度,并且通过数值模拟显示和再现了通常在实验中报告的振幅行为的典型三分支响应。

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