首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >CFD ANALYSIS OF VORTEX SHEDDING IN A CIRCULAR CYLINDER: FLOW INDUCED VIBRATION DESIGN
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CFD ANALYSIS OF VORTEX SHEDDING IN A CIRCULAR CYLINDER: FLOW INDUCED VIBRATION DESIGN

机译:圆柱体涡旋切开的CFD分析:流致振动设计

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摘要

Flow past a blunt body, such as a circular cylinder, usually experiences boundary layer separation and very strong flow oscillations in the wake region behind the body at a discrete frequency that is correlated to the Reynolds number of the flow. The periodic nature of the vortex shedding phenomenon can sometimes lead to unwanted structural vibrations. The effect of vibrating instability of a single cylinder is investigated in a uniform flow using the power of computational methods. Fluid structure coupling procedure predicts the fluid forces responsible for structural vibrations. An implicit approach to the solution of the unsteady two-dimensional Navier-Stokes equations is used for computation of flow parameters. Calculations are performed in parallel using a domain re-meshing/deforming technique with efficient communication requirements. Results for the unsteady shedding flow behind a circular cylinder are presented with experimental comparisons, showing the feasibility of accurate, efficient, time-dependent estimation of shedding frequency and resulting vibrations.
机译:通过钝体(例如圆柱体)的流通常会经历边界层分离,并在离散后的频率下在体后的尾流区域中出现非常强烈的流动振荡,该离散频率与流的雷诺数相关。旋涡脱落现象的周期性有时会导致有害的结构振动。利用计算方法的强大功能,研究了均匀流动中单个气缸振动不稳定性的影响。流体结构耦合过程可预测引起结构振动的流体力。求解非定常二维Navier-Stokes方程的隐式方法用于计算流动参数。使用具有有效通信要求的域重新啮合/变形技术并行执行计算。通过实验比较,得出了圆柱体后部非定常脱落流的结果,表明了准确,有效,随时间变化的脱落频率及其产生的振动估计的可行性。

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