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Aeroelastic behavior of long-span suspension bridges under arbitrary wind profiles

机译:大跨度悬索桥在任意风况下的气动弹性行为

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摘要

The aeroelastic behavior of suspension bridges under generic temporal and space wind distributions is studied employing a parametric one-dimensional structural model coupled with a strip-based indicial representation of the unsteady aerodynamic loads. The aeroelastic response to spatially nonuniform gusts is also investigated. The equations of motion linearized about the prestressed aerostatic equilibrium are expressed in terms of incremental kinematic variables. The aerodynamic loading characteristics of the deck cross sections of the Runyang Suspension Bridge (over the Yangtze river in China) are evaluated by means of computational fluid dynamics simulations performed to extract the aeroelastic derivatives from which the indicial aerodynamic representation is obtained. The aeroelastic equations of motion are then reduced to the state-space ordinary differential form by using the Faedo-Galerkin approach. The reduced-order bridge dynamics and the description of the aerodynamic loading via the added aerodynamic states are solved simultaneously by using a time-integration numerical scheme. Dependence of the flutter condition and the transient response to gusts is shown through systematic parametric studies.
机译:使用参数一维结构模型以及基于条带的非定常空气动力载荷的独立表示,研究了悬索桥在一般时空分布下的气动弹性行为。还研究了对空间不均匀阵风的气动弹性响应。关于预应力空气静力平衡线性化的运动方程式以增量运动学变量表示。通过计算流体动力学模拟来提取润阳悬索桥(中国长江)桥面横截面的气动载荷特性,以提取气动弹性导数,从而获得独立的气动表示。然后通过使用Faedo-Galerkin方法将气动弹性运动方程简化为状态空间常微分形式。通过使用时间积分数值方案,可以同时解决降阶桥梁动力学和通过增加的空气动力学状态对空气动力学载荷的描述。通过系统的参数研究显示了颤振条件和阵风的瞬态响应的依赖性。

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