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Pushover analysis of unreinforced irregular masonry buildings: Lessons from different modeling approaches

机译:未原始的不规则砌体建筑物的推送分析:不同建模方法的课程

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摘要

The present paper addresses the seismic performance of a half-scale two-story unreinforced masonry (URM) building with structural irregularity in plan and in elevation. The main objectives are (i) to understand the seismic response of URM buildings with torsional effects, and (ii) to evaluate the reliability of using simplified approaches for irregular masonry buildings. For this purpose, nonlinear static analyses are carried out by using three different modeling approaches, based on a continuum model, beam-based and spring-based macro-element models. The performance of each approach was compared based on capacity curves and global damage patterns. Reasonable agreement was found between numerical predictions and experimental observations. Validation of simplified approaches was generally provided with reference to regular structures but, based on the differences in the base shear capacity found here, it appears that structural irregularities are important to be taken into account for acquiring higher accuracy on simplified methods when torsion is present.
机译:本文涉及半规模的两层故障的抗震性能(URM)建筑,在计划和海拔中具有结构不规则性。主要目标是(i)了解URM建筑物与扭转效应的地震响应,(ii)以评估利用示例性砌体建筑物的可靠性。为此目的,基于连续模型,基于光束和弹簧基宏元件模型,通过使用三种不同的建模方法来执行非线性静态分析。基于容量曲线和全球损伤模式进行比较各种方法的性能。在数值预测和实验观察之间发现了合理的协议。通常参考常规结构提供简化方法的验证,但是,基于这里发现的基础剪切容量的差异,看起来结构不规则性是重要的,以便在存在扭转时获得更高的精确度。

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