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Simulation of cross-flow-induced vibration of cylinder arrays by surface vorticity method

机译:利用表面涡度法模拟横流引起的圆柱阵列振动

摘要

The surface vorticity method (SVM), which is a fast and practical grid-free two-dimensional (2-D) method, and a fluid-structure interaction model incorporating the effects of cylinder motions and displacements is used to simulate the vortex-induced vibration of cylinder arrays at sub-critical Reynolds number Re = 2.67 × 1 04. The SVM is found to be most suitable for simulating a 2-D cylinder row with large-amplitude vibrations where the vorticity field and the fluid forces of the cylinder row change drastically, and the effect of the stream on the transverse direction vibration is very significant. The fluidelastic instability of a flexible cylinder row at small pitch ratio is also investigated, and the critical reduced velocity of the cylinder row at a reduced damping parameter SG = 1.29 is calculated, which is in good agreement with experimental and analytical results of the unsteady model. Vortex-induced vibration of a staggered cylinder array is simulated using different structural parameters. When the cylinders are relatively more flexible, the flow pattern changes dramatically and the fluid-structure interaction has a dominant impact on the flow field. Compared with grid-based methods, the grid-free SVM is a fast and practical method for the simulation of the FIV of cylinder arrays due to vortex shedding at sub-critical Reynolds numbers.
机译:表面涡度法(SVM)是一种快速且实用的无网格二维(2-D)方法,并结合了圆柱运动和位移的影响的流固耦合模型用于模拟涡流诱发的次临界雷诺数Re = 2.67×1 04时圆柱阵列的振动。SVM被发现最适合于模拟具有大振幅振动的二维圆柱排,在该二维排中,涡流场和圆柱排的流体力急剧变化,并且水流对横向振动的影响非常显着。还研究了小节距比的柔性圆柱排的流体弹性不稳定性,并在减小的阻尼参数SG = 1.29的情况下计算了圆柱排的临界降低速度,这与非稳态模型的实验和分析结果非常吻合。使用不同的结构参数模拟了交错圆柱阵列的涡激振动。当圆柱体相对较柔韧性时,流型会急剧变化,并且流固耦合对流场具有显着影响。与基于网格的方法相比,由于在次临界雷诺数下的涡旋脱落,无网格SVM是一种快速实用的圆柱阵列FIV仿真方法。

著录项

  • 作者

    Lam K; Jiang GD; Liu Y; So RMC;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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