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Efficient modal-based method for analyzing nonlinear aerostatic stability of long-span bridges

机译:用于分析长跨度桥梁非线性空气稳定性的高效模态方法

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An efficient method for analyzing the nonlinear aerostatic stability of long-span bridges using a modal formulation is proposed. First, a simplified linear version defined as modal-based approach is introduced, which evaluates the bridge displacements using the modal properties of the bridge and speeds up the assessment of the critical velocity by applying a root-finding algorithm. Then, this scheme is further developed to identify the instability limit point in nonlinear structures by combining nonlinear FEM analyses with the linear version of the modal-based approach and a root-finding algorithm in an outer loop. The effects of considering the three components of the wind loads, the stays sag effect, structural nonlinearities, aerodynamic nonlinearities, and the initial wind angle of attack, are analyzed and discussed. The computational advantages of the proposed method and its accuracy are demonstrated through three application examples, including a simplified linear 1 DoF system, and linear and nonlinear FEM models of a full cable-stayed bridge. The collapse mechanism of the cable stayed bridge is driven by the stiffness degradation of the stays caused by the deck vertical upward displacements. It has been found that the influence of the nonlinear aerodynamic features is very low when the structural nonlinearities control the bridge collapse.
机译:提出了一种用于分析使用模态配方的长跨度桥的非线性空气稳定性的有效方法。首先,引入了定义为模态的方法的简化线性版本,其使用桥的模态属性评估桥位移,并通过应用根发现算法来加速临界速度的评估。然后,进一步开发该方案以通过将非线性的有限元分析与基于模式的线性版本的线性版本和外环中的根发现算法组合来识别非线性结构中的不稳定限制点。分析并讨论了考虑风荷载三个部件的效果,保持凹凸效应,结构非线性,空气动力学非线性和初始风力攻角。通过三种应用示例来证明所提出的方法的计算优势及其精度,包括简化的线性1 DOF系统,以及完整的缆车座桥的线性和非线性FEM模型。电缆保持桥的塌陷机构由由甲板垂直向上的位移引起的支柱的刚度降低驱动。已经发现,当结构非线性控制桥梁坍塌时,非线性空气动力学特征的影响非常低。

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