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Numerical analysis of freestream turbulence effects on the vortex-induced vibrations of a rectangular cylinder

机译:自由流湍流对矩形圆柱涡激振动影响的数值分析

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摘要

Large-Eddy Simulation of the flow around an elastically-mounted rectangular cylinder with an aspect ratio 4 was undertaken. 1DOF analysis of the heaving and torsional motions were performed under a free vibration. Various characteristics of the flow-field at lock-in are discussed. Subsequently, a divergence-free synthetic inflow generation approach was employed to analyse the effects of the freestream turbulence on the bridge response. The inflowturbulence intensity and integral length scales were systematically studied. The effect of turbulence intensity (up to 12%) was shown to deplete the structural response for both torsional and heaving motions. A variation ofthe tested integral length scales, which were order of the cylinder dimensions, had less effects (than a variation of the turbulence intensity) on the structure response.
机译:对长径比为4的弹性安装矩形圆柱体周围的流动进行大涡模拟。在自由振动下对起伏和扭转运动进行1DOF分析。讨论了锁定时流场的各种特性。随后,采用无散度的合成流生成方法来分析自由流湍流对桥梁响应的影响。系统地研究了湍流强度和积分长度尺度。结果表明,湍流强度的影响(高达12%)会耗尽扭转运动和升沉运动的结构响应。测试的整体长度刻度的变化(按圆柱尺寸的顺序)对结构响应的影响较小(比湍流强度的变化小)。

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