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Experimental and numerical analysis of the seismic performance of concrete block masonry buildings

机译:混凝土砌块砌体房屋抗震性能的试验与数值分析

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摘要

The increase in housing demand and the construction cost of the necessary houses for its satisfaction have motivated the study of economical and efficient solutions aiming at developing new construction methods. A new solution for the construction of residential houses is presented. Dynamic seismic tests by using a shaking table were performed on two masonry buildings. The first experimental model incorporates steel reinforcement according to the Eurocodes, while the second was tested as an unreinforced solution. A numerical model for the unreinforced solution was prepared by using macro-modelling approach. Five non-linear phased dynamic analyses with time integration representing the same seismic amplitude tests implemented during the experimental campaign were made. In terms of experimental results, the quantitative parameters for both models and the crack patterns are presented. Comparisons between the experimental results and those from the numerical simulations are also presented.
机译:住房需求的增加和满足其需求所必需的住房的建造成本,促使人们研究旨在开发新的建造方法的经济有效的解决方案。提出了一种新的住宅建筑解决方案。在两个砖石建筑上使用振动台进行了动态地震测试。第一个实验模型根据欧洲规范结合了钢筋,而第二个模型则作为非增强解决方案进行了测试。通过使用宏建模方法,为非增强解决方案建立了一个数值模型。进行了五次带有时间积分的非线性阶段性动态分析,代表了在实验期间实施的相同地震振幅测试。根据实验结果,给出了模型和裂纹模式的定量参数。还给出了实验结果与数值模拟结果之间的比较。

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