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Wind-induced nonlinear behaviors of twin-box girder bridges with various aerodynamic shapes

机译:具有各种空气动力形状的双箱梁桥的风引起的非线性行为

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Wind-induced nonlinear oscillations of twin-box girder bridges are very sensitive to the aerodynamic shape of the deck (i.e., slot width ratio (SWR) and wind fairing shape) due to the complicated flow characteristics around the bridge deck. This paper presents a fully integrated finite element (FE) model in time domain, involving a nonlinear aerodynamic force model and a bridge FE model, to allow the investigation of nonlinear oscillation behaviors of long-span twin-box girder bridges with various SWRs and wind fairing shapes. The parameters in integrated FE model were firstly identified by using CFD simulation, and then, the proposed model was validated by conducting wind tunnel testing using sectional models and full-bridge aeroelastic models. It demonstrates that the developed integrated model has the capability of simulating the nonlinear flutter behaviors of twin-box girder bridges with various aerodynamic shapes. Furthermore, the prediction results show that the wind fairing shape has significant impact on the degree of freedom participation in coupled oscillation and failure modes, as well as flutter performance of the bridges. In addition, there is an increase in amplitudes of the limit cycle oscillations with the increase in the SWR of the twin-box girder bridges, and the relationships between the bending-torsional coupled oscillation, failure modes, and SWR of the bridges with anti-symmetric wind fairings are opposite to those with symmetric wind fairings.
机译:由于桥式甲板周围的复杂流特性,风致桥桥的双箱梁桥的非线性振动对甲板的空气动力学形状非常敏感(即,槽宽比(SWR)和风整体形状)。本文介绍了一个完全集成的有限元(FE)模型在时域中,涉及非线性空气动力模型和桥FE模型,允许使用各种SWR和风的长跨度双箱梁桥的非线性振荡行为的研究整容形状。首先通过使用CFD仿真来识别集成Fe模型中的参数,然后通过使用截线型孔弹性模型进行风洞测试来验证所提出的模型。它表明,开发的集成模型具有模拟双箱梁桥的非线性颤动行为的能力,具有各种空气动力学形状。此外,预测结果表明,风整向形状对耦合振荡和故障模式的自由度以及桥梁的颤动性能产生显着影响。另外,随着双箱梁桥的SWR的增加,极限循环振荡的幅度增加,以及弯曲耦合振荡,故障模式和桥梁的抗腹板之间的关系的关系对称的风光段与对称风平的人相反。

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