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首页> 外文期刊>Engineering Structures >Wind-load fragility analysis of monopole towers by Layered Stochastic-Approximation-Monte-Carlo method
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Wind-load fragility analysis of monopole towers by Layered Stochastic-Approximation-Monte-Carlo method

机译:分层随机逼近-蒙特卡洛法分析单极塔风荷载的脆性

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摘要

This paper describes a novel numerical algorithm for the simulation of the along-wind dynamic response of a prototype of slender towers under turbulent winds, using a Layered Stochastic Approximation Monte Carlo algorithm (LSAMC). The proposed algorithm is applied to derive the statistics of the dynamic response in the presence of uncertainties in the structural properties and in the wind loading. Standard "brute force" Monte Carlo methods are also used for validating the LSAMC results. The proposed methodology efficiently estimates structural fragility curves under extreme wind loads. The methodology enables a significant speedup in the computing time compared to standard Monte Carlo sampling. Furthermore, it is demonstrated that accuracy in the estimation of structural fragility curves is superior to ordinary reliability methods (e.g. "First-order reliability methods" or FORM).
机译:本文使用分层随机逼近蒙特卡罗算法(LSAMC)描述了一种新的数值算法,用于模拟湍流条件下细长塔架原型的顺风动力响应。该算法适用于在结构特性和风荷载存在不确定性的情况下得出动态响应的统计信息。标准的“蛮力”蒙特卡洛方法也用于验证LSAMC结果。所提出的方法有效地估计了极端风荷载下的结构脆性曲线。与标准蒙特卡洛采样相比,该方法可显着提高计算时间。此外,证明了结构脆性曲线估计的准确性优于普通的可靠性方法(例如“一阶可靠性方法”或FORM)。

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