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首页> 外文期刊>International journal of computational fluid dynamics >Numerical investigation on vortex-induced vibration of an elastically mounted circular cylinder at low Reynolds number using the fictitious domain method
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Numerical investigation on vortex-induced vibration of an elastically mounted circular cylinder at low Reynolds number using the fictitious domain method

机译:利用虚拟域方法对低雷诺数弹性安装圆柱的涡激振动进行数值研究

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A direct numerical simulation of two-dimensional (2D) flow past an elastically mounted circular cylinder at low Reynolds number using the fictitious domain method had been undertaken. The cylinder motion was modelled by a two degree-of-freedom mass–spring–damper system. The computing code was verified against a benchmark problem in which flow past a stationary circular cylinder is simulated. Then, analyses of vortex-induced vibration (VIV) responses, drag and lift forces and the phase and vortex structures were carried out. Results show that the cylinder’s non-dimensional cross-flow response amplitude reaches its summit of 0.572 in the ‘lock-in’ regime. The ‘2S’, instead of the ‘2P’, vortex shedding mode is dominated in the ‘lower’ branch for this 2D low-Re VIV. A secondary oscillation is observed in the lift force when ‘lock-in’ occurs. It is shown that this secondary component changes the phase, offset the energy input by the primary component and thus reduces the cylinder responses. Effects of the Skop–Griffin parameter on cylinder responses were also investigated.
机译:使用虚拟域方法,对低雷诺数下通过弹性安装的圆柱体的二维(2D)流动进行了直接数值模拟。气缸运动是通过两个自由度的质量-弹簧-阻尼器系统建模的。针对基准问题对计算代码进行了验证,在该问题中模拟了通过固定圆柱的流量。然后,对涡激振动(VIV)响应,阻力和升力以及相和涡结构进行了分析。结果表明,在“锁定”状态下,圆柱的无量纲横流响应幅度达到了其最高点0.572。该2D低分辨率VIV的“下部”分支以“ 2S”而不是“ 2P”为主导。当“锁定”发生时,在升力中会观察到二次振荡。结果表明,该次级分量改变了相位,抵消了初级分量输入的能量,从而降低了气缸响应。还研究了Skop–Griffin参数对气缸响应的影响。

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