框架结构地震分析中累积绝对速度与性能点的理论关联

IF 0.6 Q4 ENGINEERING, CIVIL
Kahil Amar, Hannachi Naceur Eddine, H. Mohand, M. Ahmed
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引用次数: 0

摘要

摘要本文研究了潜在地震的危害性对结构和地震风险的影响。它考虑了震级、震中距离、震源处的伪深度以及土壤分类,以生成合成地震运动,将其视为结构地震分析的信号输入。案例研究考虑了阿尔及利亚广泛存在的最典型的住宅和建筑类型,即钢筋混凝土框架结构。结果表明,本研究开发的理论模型能够根据累积绝对速度预测性能点(谱位移)。他们还表明,(CAV Sd)(Sd是由推挤分析定义的性能点的谱位移)受结构极限位移值和土壤参数(剪切速度Vs)的影响较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theoretical Correlations Between the Cumulative Absolute Velocity and Performance Point for a Seismic Analysis of Framed Structures
Abstract The present paper investigates the effect of the harmfulness of a potential earthquake on structural and seismic risks. It takes into account the magnitude, epicentral distance, and pseudo depth at the hypocenter as well as the soil classification in order to generate synthetic seismic motions to be considered as signal inputs for a structural seismic analysis. The most typical typology of dwellings and buildings that are widely existing in Algeria, i.e., a reinforced concrete frame structure, is considered for the case study. The results show that the theoretical models developed in this study are able to predict the performance point (spectral displacement) according to the cumulative absolute velocity. They also show that(CAV-Sd) (Sd being the spectral displacement of the performance point defined by a pushover analysis) is slightly influenced by the value of the ultimate displacements of the structures and the soil parameters (shear velocity Vs).
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审稿时长
29 weeks
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