E-Cloud: Efficient seismic fragility assessment of structures based on enhanced cloud analysis

云计算 脆弱性 计算机科学 非线性系统 回归分析 对数 概率逻辑 数学 数学分析 人工智能 物理 机器学习 量子力学 热力学 操作系统
作者
Lujie Zhuang,Pengcheng Yin,Yutao Pang
出处
期刊:Earthquake Spectra [SAGE]
卷期号:38 (4): 2994-3016 被引量:15
标识
DOI:10.1177/87552930221103290
摘要

Cloud analysis is based on linear regression in the logarithmic space using least squares, in which a large number of nonlinear dynamic analyses are required to ensure the regression accuracy. Thus, it needs significant computational effort to derive fragility curves especially for the complicated structures. This article proposed the Enhanced Cloud approach (E-Cloud) to enhance the efficiency but maintain the accuracy of Cloud analysis. The basic concept of the E-Cloud method aims to utilize both maximum and additional seismic responses with corresponding intensity measures (IMs) from ground motions for the logarithmic linear regression in Cloud analysis. The additional seismic responses can be obtained from the engineering demand parameter (EDP)-IM curve, which is generated at the specific time duration when structures are subjected to intensifying dynamic excitations in nonlinear time–history analysis. The required number of nonlinear time–history analyses in Cloud analysis is reduced since additional seismic responses (with their corresponding IM value) are used as additional Cloud points for the Cloud regression. The proposed E-Cloud method is applied for the case study of a typical reinforced concrete (RC) frame structure. By comparison of probabilistic seismic demand models and fragility curves from the E-Cloud method to Cloud analysis, it is demonstrated that the proposed E-Cloud method can significantly improve the computational efficiency of the Cloud analysis, which also leads to accurate fragility estimates of the structures.
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