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NUMERICAL SIMULATION OF THE MULTIPLE BRANCH TRANSVERSE RESPONSE OF A LOW MASS RATIO ELASTICALLY SUPPORTED CIRCULAR CYLINDER

机译:低质量比的多分支横向响应的数值模拟弹性支撑圆柱

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The paper presents the results of a numerical investigation of the transverse Vortex-Induced Vibrations of an undamped, low mass ratio elastically supported circular cylinder that was subjected to a uniform flow that resulted in a Reynolds number of 10~4. The numerical simulations were performed using a two-dimensional Large Eddy Simulation model. The computed cylinder response exhibits three branches; the initial, upper and lower branches. The computed initial and lower branches, which exhibit 2S and 2P modes of shedding respectively, show many similarities to those reported from experiments. However, the computed upper branch, on which a maximum amplitude of response of O.83D was achieved, shows some dissimilarities to those reported from experiments. The failure to correctly simulate the upper branch response is thought to be due to the high degree of flow three-dimensionality that has been reported to exist on the upper branch.
机译:本文呈现了横向涡旋诱导的透明振动的数值研究的结果,其被弹性支撑的圆柱体经受均匀的流动,导致雷诺数为10〜4。使用二维大涡模拟模型进行数值模拟。计算的气缸响应呈现三个分支;初始,上部和下部分支。计算的初始和下部分支分别表现出2S和2P脱落模式,显示与从实验报告的那些相同的相似之处。然而,计算的上部分支在其上实现了o.83d的最大响应响应的上部分支,表明了对实验报告的那些的差异。未能正确模拟上部分支响应被认为是由于据报道的高度的流动三维度存在于上部分支中。

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