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Grid-free surface vorticity method applied to flow induced vibration of flexible cylinders

机译:无网格表面涡度法在柔性圆柱体流致振动中的应用

摘要

In order to study cross flow induced vibration of heat exchanger tube bundles, a new fluid-structure interaction model based on surface vorticity method is proposed. With this model, the vibration of a flexible cylinder is simulated at Re = 2.67 × 104 , the computational results of the cylinder response, the fluid force, the vibration frequency, and the vorticity map are presented. The numerical results reproduce the amplitude-limiting and non-linear (lock-in) characteristics of flow-induced vibration. The maximum vibration amplitude as well as its corresponding lock-in frequency is in good agreement with experimental results. The amplitude of vibration can be as high as 0.88D for the case investigated. As vibration amplitude increases, the amplitude of the lift force also increases. With enhancement of vibration amplitude, the vortex pattern in the near wake changes significantly. This fluid-structure interaction model is further applied to simulate flow-induced vibration of two tandem cylinders and two side-by-side cylinders at similar Reynolds number. Promising and reasonable results and predictions are obtained. It is hopeful that with this relatively simple and computer time saving method, flow induced vibration of a large number of flexible tube bundles can be successfully simulated.
机译:为了研究换热管束的横流引起的振动,提出了一种新的基于表面涡度法的流固耦合模型。利用该模型,以Re = 2.67×104来模拟柔性气缸的振动,并给出了气缸响应,流体力,振动频率和涡度图的计算结果。数值结果再现了流动引起的振动的幅度限制和非线性(锁定)特性。最大振动幅度及其相应的锁定频率与实验结果吻合良好。对于所研究的情况,振动幅度可以高达0.88D。随着振动幅度增加,升力的幅度也增加。随着振动幅度的增加,近尾流中的涡旋模式发生显着变化。该流体-结构相互作用模型还被应用来模拟两个雷诺数相似的两个串联气缸和两个并排气缸的流动引起的振动。获得有希望和合理的结果和预测。希望通过这种相对简单且节省计算机时间的方法,可以成功模拟大量柔性管束的流动引起的振动。

著录项

  • 作者

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

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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