Correlation between energy and displacement demands for infilled reinforced concrete frames

IF 2.2 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Frontiers in Built Environment Pub Date : 2023-08-15 DOI:10.3389/fbuil.2023.1198478
G. Angelucci, F. Mollaioli, G. Quaranta
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Abstract

Introduction: It is well recognized that masonry infills, even though they are non-structural elements, might offer a significant earthquake resistance and can prevent the collapse of relatively weak reinforced concrete structures.Methods: The goal of this study is to investigate the energy dissipation contribution of masonry infills in reinforced concrete frames subjected to earthquake ground motion. To this purpose, a sticktype model with and without infills is considered for the evaluation of the inelastic response of representative frame structures. The infills are modeled by means of equivalent strut elements, which can only carry compressive loads. To investigate the influence of their mechanical characteristics, different idealized type of masonry infills are considered, and the weakest one is selected for the dynamic analyses based on the whole strong motions database.Results: Wide ranges of structural systems and natural periods are taken into account, in such a way to establish response spectra for several significant parameters, including those based on energy. The results of the present investigation demonstrate that the infills significantly contribute to the energy dissipation capacity, provided that they are present in all stories.Discussion: It is found that the contribution of masonry infills is of great importance in reducing both dissipation and displacement energy demands in frame elements. The effectiveness of their contribution depends on the characteristics of the ground motion, especially for non-seismic frames.
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填充钢筋混凝土框架能量与位移需求的关系
引言:众所周知,砌体填充物即使是非结构构件,也可能具有显著的抗震性能,并可以防止相对较弱的钢筋混凝土结构倒塌。方法:本研究的目的是研究地震动作用下钢筋混凝土框架中砌体填充物的能量耗散贡献。为此,考虑了一个有填充物和无填充物的粘性模型来评估具有代表性的框架结构的非弹性响应。填充物通过等效支柱单元建模,该单元只能承载压缩载荷。为了研究其力学特性的影响,考虑了不同理想化类型的砌体填充物,并在整个强运动数据库的基础上选择最弱的一种进行动态分析。结果:考虑了广泛的结构系统和自然周期,从而建立了几个重要参数的响应谱,包括基于能量的参数。本研究的结果表明,填充物对能量耗散能力有显著贡献,前提是它们存在于所有楼层中。讨论:研究发现,砌体填充物对降低框架构件的耗散和位移能量需求具有重要意义。其贡献的有效性取决于地面运动的特征,尤其是对于非地震框架。
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来源期刊
Frontiers in Built Environment
Frontiers in Built Environment Social Sciences-Urban Studies
CiteScore
4.80
自引率
6.70%
发文量
266
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