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Nonsynoptic Wind-Induced Transient Effects on Linear Bridge Aerodynamics

机译:Nonsynoptic风引起的线性桥空气动力学瞬态效应

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This contribution focuses on the nonsynoptic wind-induced effects on linear bridge aerodynamics. More specifically, the transient nature of the downburst events and its effects on the aerodynamic parameters are investigated. Because an additional timescale is introduced in the wind-structure interaction system attributable to the time-varying transient nonstationarity of the nonsynoptic winds, the conventional one-dimensional (1D) indicial response function needs to be extended to a two-dimensional (2D) case. Buffeting response of a bridge deck based on the time-domain linear analysis framework associated with 2D and 1D indicial response functions, representing aerodynamics under nonsynoptic winds and corresponding synoptic equivalents, was calculated. The results highlighted the important effects of the transient nature on the nonsynoptic wind-induced structural response. The presented approach could provide a straightforward physical explanation on the underlying mechanism of the changing aerodynamics attributable to time-varying transient effects. The study may facilitate a more appropriate design of the flexible horizontal structures considering nonsynoptic wind loads. (C) 2017 American Society of Civil Engineers.
机译:这一贡献侧重于对线性桥空气动力学的非宁奇风引起的效果。更具体地说,研究了灌胀事件的瞬态性质及其对空气动力学参数的影响。因为在归属于非宁奇风的时变瞬态非运动性的风 - 结构交互系统中引入了额外的时间尺度,所以传统的一维(1D)标记响应函数需要扩展到二维(2D)案例。基于与2D和1D标记响应函数相关联的时域线性分析框架的桥式折叠的频响应,计算了代表不合理风中的空气动力学和相应的舞蹈等同物。结果突出了瞬态性质对不合理风引起的结构应答的重要影响。所提出的方法可以对因时变瞬态效应的变化空气动力学的底层机制提供直接的物理解释。该研究可以促进考虑不合逻源负荷的柔性水平结构的更合适的设计。 (c)2017美国土木工程师协会。

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