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STOCHASTIC SEISMIC RESPONSE ANALYSIS AND RELIABILITY EVALUATION OF HYSTERETIC STRUCTURES

机译:滞回结构的随机地震响应分析及可靠性评价

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Stochastic seismic response and reliability evaluation of hysteretic structures are investigated. Practical engineering structures usually exhibit strong nonlinearity, especially hysteretic properties, under severe earthquakes. At the same time, large uncertainties are usually involved in earthquakes. Therefore, stochastic seismic response analysis and reliability evaluation of engineering structures has long been one of the key problems in earthquake engineering. Nonetheless, rational approaches tackling the difficult problem have not been reached to date. In the past few years, a family of probability density evolution method, through which the instantaneous probability density function and the extreme value distribution of the structural responses could be captured, has been developed. In the present paper, using the probability density evolution method together with a physical-background-based ground motion model, stochastic seismic response analysis is carried out. Further, dynamic reliability is evaluated through the extreme value distribution.
机译:研究了随机地震反应和滞后结构的可靠性评估。实际工程结构通常表现出强烈的非线性,尤其是滞后性质,在严重地震下。与此同时,大规模的不确定性通常涉及地震。因此,工程结构的随机地震响应分析和可靠性评估长期以来一直是地震工程中的关键问题之一。尽管如此,迄今尚未达到解决困难问题的合理方法。在过去几年中,已经开发出一种概率密度进化方法,通过该概率密度进化方法通过该概率密度函数和结构响应的极值分布,已经开发出来。在本文中,利用概率密度进化法与基于物理背景的地面运动模型,随机地震反应分析进行了随机地震反应分析。此外,通过极值分布评估动态可靠性。

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