Seismic capacity evaluation of corroded reinforced concrete frame structures

IF 4.4 3区 工程技术 Q1 ENGINEERING, CIVIL Archives of Civil and Mechanical Engineering Pub Date : 2024-11-08 DOI:10.1007/s43452-024-01059-5
Ya-Hui Li, Shan-Suo Zheng, Li-Guo Dong, De-Liang Wang, Zi-Wei Sang
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Abstract

In-service reinforced concrete (RC) structures trigger complex deterioration mechanisms in seismic performance due to corrosion, leading to difficulties in evaluating the seismic capacity. To scientifically evaluate the seismic capacity of corroded RC frame structures, this paper proposes a quantifiable framework for absolute seismic capacity evaluation. The study establishes numerical models of typical RC frame structures considering the number of stories, service years, seismic fortification intensity, and different versions of design codes. Additionally, classification criteria for structural failure states based on the proportion of component damage are proposed. The seismic capacity of corroded RC frame structures under different failure states is determined using elastoplastic time-history analysis, and the influence of various parameters on the structural seismic capacity is investigated. Based on the results of the structural seismic capacity evaluation, a prediction model for the seismic capacity of corroded RC frame structures is developed using the BP neural network to establish the nonlinear mapping relationship between key parameters and structural seismic capacity. The results indicate that the seismic capacity of corroded RC frame structures continuously decreases with an increase in the service years and the number of stories. Earlier versions of design codes result in smaller residual seismic capacity of RC frame structures under different failure states, with a faster degradation rate. The sensitivity of the structural seismic capacity to various parameters is ranked as follows: structural failure states, the number of stories, seismic fortification intensity, service years, and versions of design codes.

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腐蚀钢筋混凝土框架结构的抗震能力评估
在役钢筋混凝土(RC)结构因腐蚀而引发的抗震性能退化机制复杂,导致抗震能力评估困难重重。为科学评估腐蚀钢筋混凝土框架结构的抗震能力,本文提出了一个可量化的绝对抗震能力评估框架。研究建立了典型 RC 框架结构的数值模型,考虑了层数、使用年限、抗震设防烈度和不同版本的设计规范。此外,还提出了基于构件损坏比例的结构破坏状态分类标准。利用弹塑性时间历程分析确定了不同破坏状态下腐蚀 RC 框架结构的抗震能力,并研究了各种参数对结构抗震能力的影响。在结构抗震能力评估结果的基础上,利用 BP 神经网络建立了腐蚀 RC 框架结构的抗震能力预测模型,建立了关键参数与结构抗震能力之间的非线性映射关系。结果表明,随着使用年限和层数的增加,锈蚀 RC 框架结构的抗震能力不断降低。早期版本的设计规范导致 RC 框架结构在不同破坏状态下的残余抗震能力较小,退化速度较快。结构抗震能力对各种参数的敏感性排序如下:结构破坏状态、层数、抗震设防烈度、使用年限和设计规范版本。
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来源期刊
Archives of Civil and Mechanical Engineering
Archives of Civil and Mechanical Engineering 工程技术-材料科学:综合
CiteScore
6.80
自引率
9.10%
发文量
201
审稿时长
4 months
期刊介绍: Archives of Civil and Mechanical Engineering (ACME) publishes both theoretical and experimental original research articles which explore or exploit new ideas and techniques in three main areas: structural engineering, mechanics of materials and materials science. The aim of the journal is to advance science related to structural engineering focusing on structures, machines and mechanical systems. The journal also promotes advancement in the area of mechanics of materials, by publishing most recent findings in elasticity, plasticity, rheology, fatigue and fracture mechanics. The third area the journal is concentrating on is materials science, with emphasis on metals, composites, etc., their structures and properties as well as methods of evaluation. In addition to research papers, the Editorial Board welcomes state-of-the-art reviews on specialized topics. All such articles have to be sent to the Editor-in-Chief before submission for pre-submission review process. Only articles approved by the Editor-in-Chief in pre-submission process can be submitted to the journal for further processing. Approval in pre-submission stage doesn''t guarantee acceptance for publication as all papers are subject to a regular referee procedure.
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