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Life-Cycle Typhoon Risk Analysis for Roofs of Low-Rise Buildings Based on the Extremum Probability Density Evolution Method

机译:基于极值概率密度演化法的低层建筑屋面全生命周期台风风险分析

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摘要

Abstract The extremum probability density evolution method (EPDEM) was introduced for the life-cycle risk analysis of the roofs of low-rise buildings subjected to typhoons. This method can use small sample sizes to account for the uncertainties of winds during the entire track of a typhoon and the changes in resistance of structures over time. This study generated typhoons in Shanghai, China using the Yan Meng wind field model. The EPDEM-based wind load analysis combined with a wind tunnel test was used to generate the probability density curve of typhoon wind loads. To improve the computational accuracy, a modified k-means clustering algorithm was introduced in representative point selection. This approach was compared with the Monte Carlo method to show its effectiveness and accuracy for practical applications. Furthermore, risk analysis based on the EPDEM, considering changes in roof resistance within the lifetime of the building, was carried out. The results show that the risk is time-variant and is influenced greatly by the resistance of a structure, and the reliability of the structure declines rapidly after 50?years. A methodology is proposed to predict the vulnerability curves for a new structure at different service times.
机译:摘要 采用极值概率密度演化法(EPDEM)对台风作用下低层建筑屋面进行生命周期风险分析。该方法可以使用小样本量来解释台风整个路径期间风的不确定性以及结构阻力随时间的变化。本研究利用严萌风场模型生成了中国上海的台风。采用基于EPDEM的风荷载分析结合风洞试验,生成台风风荷载概率密度曲线。为了提高计算精度,在代表性点选择中引入改进的k-means聚类算法。将该方法与蒙特卡罗方法进行了比较,以证明其在实际应用中的有效性和准确性。此外,还基于EPDEM进行了风险分析,考虑了建筑物生命周期内屋顶阻力的变化。结果表明:风险随时间变化,受结构阻力影响较大,50年后结构可靠性迅速下降;提出了一种预测新结构在不同服役时间的脆弱性曲线的方法。

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