Performance analysis of damaged buildings applying scenario of related non-linear analyses and damage coefficient

IF 0.5 Q4 ENGINEERING, CIVIL
M. Ćosić, R. Folić
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引用次数: 3

Abstract

The paper deals with methodology developed and presented for analyzing the damage on structures exposed to accidental and seismic actions. The procedure is based on non-linear numerical analysis, taking into account the principles of Performance-Based Seismic Design (PBSD). The stiffness matrix of the effects of vertical action is used as the initial stiffness matrix in non-linear analysis which simulates the collapse of individual ground-floor columns, forming thereby a number of possible scenarios. By the end of the analysis that simulates the collapse of individual columns, the stiffness matrix is used as the initial stiffness matrix for Non-linear Static Pushover Analysis (NSPA) of bi-directional seismic action (X and Y directions). Target displacement analyses were conducted using the Capacity Spectrum Method (CSM). The structure's conditions/state was assessed based on the calculated global and inter-storey drifts and the damage coefficient developed. The damage level to the building was established using an integrated approach based on global and inter-storey drifts, so that, depending on the level of displacements for which the drifts are identified, a more reliable answer can be obtained. Applying the damage coefficient, a prompt, reliable and accurate indication can be obtained on the damage level to the entire structure in the capacitive domain, from elastic and non-linear to collapse state.
基于相关非线性分析和损伤系数的受损建筑性能分析
本文讨论了为分析结构在意外和地震作用下的损伤而发展和提出的方法。该程序基于非线性数值分析,并考虑了基于性能的抗震设计(PBSD)原则。在非线性分析中,竖向作用作用的刚度矩阵被用作初始刚度矩阵,该非线性分析模拟了单个底层柱的倒塌,从而形成了许多可能的情况。在模拟单个柱倒塌的分析结束时,刚度矩阵被用作双向地震作用(X和Y方向)的非线性静态推覆分析(NSPA)的初始刚度矩阵。采用容量谱法(CSM)对目标位移进行分析。基于计算得到的整体位移和层间位移对结构的状态进行了评估,并建立了损伤系数。建筑物的破坏水平是使用基于全局和层间漂移的综合方法确定的,因此,根据确定漂移的位移水平,可以获得更可靠的答案。利用损伤系数,可以快速、可靠、准确地反映整个结构从弹性、非线性到崩溃状态的电容域损伤程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
自引率
25.00%
发文量
4
审稿时长
4 weeks
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