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An iterative approach for time-domain flutter analysis of bridges based on restart technique

机译:基于重启技术的桥梁时域颤动分析的迭代方法

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This paper presents a restart iterative approach for time-domain flutter analysis of long-span bridges using the commercial FE package ANSYS. This approach utilizes the recursive formats of impulse-response-function expressions for bridge's aeroelastic forces. Nonlinear dynamic equilibrium equations are iteratively solved by using the restart technique in ANSYS, which enable the equilibrium state of system to get back to last moment absolutely during iterations. The condition for the onset of flutter instability becomes that, at a certain wind velocity, the amplitude of vibration is invariant with time. A long-span suspension bridge was taken as a numerical example to verify the applicability and accuracy of the proposed method by comparing calculated results with wind tunnel tests. The proposed method enables the bridge designers and engineering practitioners to carry out time-domain flutter analysis of bridges in commercial FE package ANSYS.
机译:本文介绍了使用商业FE包ANSYS的长跨度桥梁时域颤动分析的重启迭代方法。这种方法利用桥接空气弹性力的循环响应功能表达的递归格式。通过使用ANSYS中的重启技术来迭代地解决非线性动态平衡方程,这使得系统的平衡状态能够在迭代期间绝对恢复到最后一刻。颤动不稳定性发作的条件变得在某种风速下,振动的幅度是不变的。将长跨度悬架桥作为数值示例,以验证所提出的方法的适用性和准确性,通过将计算结果与风洞测试进行比较。所提出的方法使桥梁设计师和工程师从业者能够在商业FE包ANSYS中开展桥梁的时域颤动分析。

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