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Fragility analysis of nonproportionally damped inelastic MDOF structural systems exposed to stochastic seismic excitation

机译:随机地震激励作用下非比例阻尼非弹性MDOF结构系统的易损性分析

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摘要

A novel methodology for conducting efficiently fragility analysis considering nonproportionally damped inelastic multi degree-of-freedom (MDOF) structural systems subject to stochastic seismic excitations defined by an advanced stochastic model consistent with magnitude-epicentral distance earthquake properties is developed. To this aim, an approximate stochastic dynamics technique for determining the system response amplitude probability density functions (PDFs) is developed. Firstly, relying on statistical linearization and state-variable formulation the complex eigenvalue problem is addressed through the time-domain. Secondly, utilizing the forced vibrational modal properties of the linearized MDOF system in conjunction with a combination of deterministic and stochastic averaging treatment, the MDOF system modal response amplitude process PDFs are determined. The modal participation factors are then defined for the complex-valued mode shapes and the total response amplitude process PDFs are provided in physical coordinates. Subsequently, appropriate limit states are related with the higher order statistics of the engineering demand parameters (i.e. that of the PDF) for quantifying structural system related fragilities. Nevertheless, due to the vector-valued nature of the adopted intensity measure, depicting system fragilities takes the form of three-dimensional fragility surfaces. The associated low computational cost renders the proposed methodology particularly useful for efficient structural system fragility analysis and related performance-based engineering design applications. A multi-storey building structure comprising the bilinear hysteretic model serves as a numerical example for demonstrating the reliability of the proposed fragility analysis methodology. Nonlinear response time-history analysis involving a large ensemble of compatible accelerograms is conducted to assess the accuracy of the proposed methodology in a Monte Carlo-based context. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提出了一种新的方法来进行有效的脆性分析,该方法考虑了非随机阻尼非弹性多自由度(MDOF)结构系统受随机地震激励的影响,该随机地震激励是由与数量级-表观距离地震特性一致的高级随机模型定义的。为此,开发了一种用于确定系统响应幅度概率密度函数(PDF)的近似随机动力学技术。首先,依靠统计线性化和状态变量表述,通过时域解决复杂特征值问题。其次,利用线性化MDOF系统的强制振动模态特性,结合确定性和随机平均处理,确定MDOF系统模态响应幅度过程PDFs。然后,为复数值模式形状定义模态参与因子,并在物理坐标中提供总响应幅度过程PDF。随后,适当的极限状态与工程需求参数的高阶统计量(即PDF的统计量)相关,以量化与结构系统有关的脆弱性。然而,由于所采用强度测量的矢量值性质,描绘系统脆弱性采取了三维脆弱表面的形式。相关的低计算成本使得所提出的方法对于有效的结构系统脆性分析和相关的基于性能的工程设计应用特别有用。包含双线性滞后模型的多层建筑结构作为数值示例,证明了所提出的脆弱性分析方法的可靠性。进行了涉及大量兼容加速度图的非线性响应时间历史分析,以评估基于蒙特卡洛的环境下所提出方法的准确性。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Computers & Structures》 |2020年第1期|106129.1-106129.9|共9页
  • 作者单位

    Leibniz Univ Hannover Inst Risk & Reliabil Fac Civil Engn & Geodet Sci Callinstr 34 D-30167 Hannover Germany;

    Leibniz Univ Hannover Inst Risk & Reliabil Fac Civil Engn & Geodet Sci Callinstr 34 D-30167 Hannover Germany|Univ Liverpool Inst Risk & Uncertainty Peach St Liverpool L69 7ZF Merseyside England|Univ Liverpool Sch Engn Peach St Liverpool L69 7ZF Merseyside England|Tongji Univ Int Joint Res Ctr Engn Reliabil & Stochast Mech 1239 Si Ping Rd Shanghai 200092 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fragility surfaces; Nonlinear stochastic dynamics; Stochastic field; Statistical linearization; Stochastic averaging; Bilinear MDOF hysteretic system;

    机译:易碎表面非线性随机动力学随机场统计线性化;随机平均;双线性MDOF滞回系统;

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