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CFD Numerical Simulation of Vortex-Induced Vibration of a Stay Cable under a Wind Profile

机译:风廓线下斜拉索涡激振动的CFD数值模拟

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VTV (Vortex-induced vibration) of a stay cable subjected to a wind profile is numerically simulated through combining CFD (Computational Fluid Dynamics)code CFX 10.0 and CSD (Computational Structural Dynamics) code ANSYS 10.0.A stay cable with the inclined angle of 30° is used as the numerical model. Under a profile of mean wind speed, unsteady aerodynamic lift coefficients of the cable have been analyzed in both time-domain and frequencydomain when VTV occurs. The results indicate that the lift coefficient wave response of the stay cable under a wind profile is different from that of an infinitely long cable under a uniform flow in water (i.e. without consideration of profile) obtained by direct numerical simulation. Cable oscillations can severely influence the unsteady aerodynamic frequencies, and change flow field distribution near the cable and influence the vortex shedding in the wake.
机译:通过将CFD(计算流体力学)代码CFX 10.0和CSD(计算结构动力学)代码ANSYS 10.0相结合,对风缆中的斜拉索的VTV(涡激振动)进行了数值模拟。斜角为30的斜拉索°用作数值模型。根据平均风速,在发生VTV时,已在时域和频域中分析了电缆的非稳态气动升力系数。结果表明,通过直接数值模拟获得的斜拉索在风廓线下的升力系数波响应与无限长的索拉在均匀水流(即不考虑廓线)下的升力系数波响应不同。电缆振动会严重影响不稳定的空气动力学频率​​,并改变电缆附近的流场分布并影响尾流中的涡旋脱落。

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