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Numerical simulation of dynamic response of a long-span bridge to assess its vulnerability to non-synoptic wind

机译:大跨度桥梁动力响应评估非天气性风的数值模拟

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Winds generated by non-synoptic events such as those from tornadoes, microbursts or gust fronts, that are non-stationary or transient in nature and extreme in magnitude, can cause major damage to flexible structures. In this paper, a time-domain method is used to simulate the response of a long-span bridge subject to winds generated by a particular type of non-synoptic wind phenomenon such as a microburst to assess the vulnerability of the bridge to such winds. The self-excited or motion-induced and buffeting or turbulence-induced wind loads on the structure were modeled and simulated by Rational Functions and buffeting indicial functions, respectively. Wind from a translating microburst was simulated using empirical relationships that were derived from measurements of a laboratory-simulated microburst and the bridge response calculated to compare it with those induced by an equivalent straight-line wind that is used for structural design. It is shown that microburst induced structural vibration could be larger or smaller than the vibration induced by straight-line wind of equivalent magnitude depending on the relative size of the microburst with respect to the bridge span.
机译:由非天气事件产生的风,例如来自龙卷风,微暴或阵风锋面的风,本质上是非平稳或瞬态的,且强度极高,可能对柔性结构造成重大破坏。在本文中,使用时域方法来模拟大跨度桥梁对由特定类型的非天气风现象(如微暴)产生的风的响应,以评估桥梁对此类风的脆弱性。结构上的自激或运动引起的振动或抖振或湍流引起的风荷载分别通过有理函数和抖振独立函数进行建模和仿真。使用从实验室模拟的微爆破的测量结果得出的经验关系来模拟来自平移微爆破的风,并计算桥响应以将其与用于结构设计的等效直线风引起的风向进行比较。结果表明,取决于微爆裂相对于桥梁跨度的相对大小,微爆裂引起的结构振动可能大于或小于等量直线风引起的振动。

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