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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Numerical evaluation of vortex-induced vibration amplitude of a box girder bridge using forced oscillation method
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Numerical evaluation of vortex-induced vibration amplitude of a box girder bridge using forced oscillation method

机译:强制振荡法的塑料梁桥涡轮振动幅度的数值评价

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摘要

The evaluation of the amplitude of the vortex-induced vibration (VIV) of a long-span bridge is necessary to implement a wind-resistant design. The development of high-performance computing has led to the use of computational fluid dynamics (CFD) in this domain, but the evaluation of VIV amplitude using the free vibration method in CFD incurs a high computational cost because of the small negative aerodynamic damping in the wind speed region of VIV. In this study, the use of flutter derivatives based on the forced oscillation method with a large eddy simulation is proposed for evaluating the VIV amplitude to reduce computational cost. The heaving VIV amplitude of a box girder was evaluated using simulated flutter derivatives and the results were validated by corresponding free vibration wind tunnel tests. Because the aerodynamic damping obtained by the flutter derivatives showed a clear dependence on the oscillation amplitude, the VIV amplitude can be evaluated using the proposed method. The effects of the spanwise domain size and Reynolds number were also significant.
机译:需要评估长跨度桥的涡旋诱导的振动(VIV)的幅度来实现防风设计。高性能计算的发展导致了该领域的计算流体动力学(CFD),但由于小型空气动力学阻尼,因此使用CFD中的自由振动方法评估VIV振幅的评估VIV的风速区域。在这项研究中,提出了使用基于强制振荡方法的颤动衍生物具有大涡模拟的涡流模拟,用于评估VIV幅度以降低计算成本。使用模拟的颤动衍生物评估箱梁的高温VIV幅度,并通过相应的自由振动风洞测试验证结果。因为颤振衍生物获得的空气动力学阻尼显示出对振荡幅度的明显依赖性,所以可以使用所提出的方法评估VIV幅度。翼展域尺寸和雷诺数的影响也显着。

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