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首页> 外文期刊>Journal of Fluids and Structures >Galloping oscillation of a circular cylinder firmly combined with different shaped fairing devices
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Galloping oscillation of a circular cylinder firmly combined with different shaped fairing devices

机译:圆柱形振荡圆柱体牢固地结合不同形状的整流装置

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AbstractThe galloping oscillation of a circular cylinder combined with different fairing devices is numerically studied. The fairing devices are integrated with a circular cylinder that is supported by a spring and a damper. An unsteady Reynolds-averaged Navier–Stokes (URANS) model corrected with the arbitrary Lagrange Euler (ALE) method is used as the governing model of the fluid flow while the governing equations are solved with a total variation diminishing (TVD) finite volume method (FVM). The SST turbulence model is used. The fluid–structure-interaction (FSI) simulations are performed under the reduced velocities ranging from 3 to 25. The simulation results are validated with the available experimental and numerical results with a short-tail fairing device. The influences of the shapes and the characteristic lengths of the fairing devices on the galloping oscillation are discussed. The shape of the fairing devices are found to influence the vortex shedding patterns in the wake of the flow field while the characteristic length decides the galloping behavior of the cylinder at different reduced velocities. The fairing devices with the smallest characteristic length have the best vibration suppression performance in the present study.Highlights?Galloping oscillation of different shaped fairing devices is numerically studied.?Fairing characteristic length is found to decide the galloping performance.?Fairing shape have limited influence on galloping performance.]]>
机译:<![cdata [ 抽象 圆柱形振荡与不同的整流装置联合的彩色振荡在数值上进行了研究。整体装置与弹簧和阻尼器支撑的圆柱体集成。使用任意拉格朗日欧拉(ALE)方法校正的不稳定雷诺平均天Navier-Stokes(urans)模型用作流体流的控制模型,而控制方程以总变化递减(TVD)有限体积法( FVM)。使用SST湍流模型。流体结构 - 相互作用(FSI)模拟在3至25的降低的速度下进行。仿真结果用可用的实验和数值结果与短尾展示装置进行了验证。讨论了形状和整流装置的特征长度对疾驰振荡的影响。发现整流装置的形状在流场的唤醒中影响涡旋脱落图案,而特征长度决定圆柱体的良好行为在不同的降低的速度下。具有最小特征长度的整流装置具有本研究中最佳的振动抑制性​​能。 突出显示 不同形状的整流设备的疾驰振荡在数值上进行了数量研究。 查找整体特征长度来决定良好的性能。 整流罩对疾驰性能的影响有限。 ]]>

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