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Experimental and numerical analyses of unreinforced masonry wall components and building

机译:未合成的砌体墙组件和建筑物的实验性和数值分析

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In this study, three masonry shear wall prototypes with different opening configurations and a single room (URM) building constituted by the assemblage of the aforementioned walls are studied. Numerical results are compared with the experimental results carried out to validate the advanced numerical modelling. Two different Finite Element models are adopted for the numerical simulations; the first assumes that masonry behaves as a simple homogenous isotropic material exhibiting separate damage in tension and compression, the second relies on discretization of the individual walls and the whole building by means of elastic 8 noded elements and homogenized interfaces. Even though the first method provides acceptable predictions of the lateral load carrying capacity, damage criteria obtained are often not too close to those experimentally observed. Conversely, the second model exhibits the sufficient level of complexity that allows not only to accurately predict the global behavior, but also provides crack patterns very close to those experimentally obtained, so being considered a reliable tool for analysis of URM buildings and further to devise strengthening schemes to reduce their seismic vulnerability. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了具有不同开口配置的三个砌体剪力墙原型和由上述壁的组合构成的单个房间(URM)建筑。将数值结果与用于验证先进数值建模进行的实验结果进行比较。使用两种不同的有限元模型用于数值模拟;第一个假设砖石的表现为在张力和压缩中具有不同损伤的简单均匀各向同性材料,第二种依靠各个墙壁和整个建筑物的离散化通过弹性8点点元件和均匀的界面依赖于各个墙壁和整个建筑物。尽管第一种方法提供横向载荷承载能力的可接受的预测,所获得的损坏标准通常不是太接近那些实验所观察到的。相反,第二种模型展示了足够的复杂程度,其允许不仅可以准确地预测全局行为,而且还提供非常接近实验获得的裂缝图案,因此被认为是用于分析URM建筑物的可靠工具,进一步设计减少他们的地震脆弱性的计划。 (c)2020 elestvier有限公司保留所有权利。

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