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Influence of fluid-structure interaction on vortex induced vibration and lock-in phenomena in long span bridges

机译:大跨度桥梁中流固耦合对涡激振动和抱死现象的影响

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摘要

In this paper, deck models of a cable stayed bridge are generated in ABAQUS-finite element program once using only CFD model (one-way fluid-structure interaction) and another by using both the CFD model and the CSD model together (two-way fluid-structure interaction) in a co-simulation. Shedding frequencies for the associated wind velocities in the lock-in region are calculated in both approaches. The results are validated with Simiu and Scanlan results. The lift and drag coefficients are determined for the two approaches and the latter results are validated with the flat plate theory results by Munson and coauthors. A decrease in the critical wind velocity and the shedding frequencies considering two-way approach was determined compared to those obtained in the one-way approach. The results of the lift and drag forces in the two-way approach showed appreciable decrease in their values. It was concluded that the two-way approach predicts earlier vortex induced vibration for lower critical wind velocities and lock-in phenomena will appear at lower natural frequencies of the long span bridges. This helps the designers to efficiently plan and consider for the design and safety of the long span bridge against this type of vibration.
机译:在本文中,斜拉桥的桥面模型是在ABAQUS有限元程序中生成的,一次仅使用CFD模型(单向流体-结构相互作用),另一次则同时使用CFD模型和CSD模型(双向)。共同仿真中的流固耦合)。在两种方法中都计算了锁定区域中相关风速的脱落频率。该结果通过Simiu和Scanlan结果进行了验证。两种方法都确定了升力和阻力系数,Munson和合著者的平板理论结果验证了后者的结果。与单向方法相比,确定了考虑两向方法的临界风速和脱落频率的降低。双向方法中的提升力和拖动力的结果表明它们的值明显下降。得出的结论是,双向方法可预测较低的临界风速会产生较早的涡激振动,并且在大跨度桥梁的固有频率较低时会出现锁定现象。这有助于设计人员有效地规划和考虑大跨度桥梁的设计以及针对此类振动的安全性。

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