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Seismic Performance Evaluation of Masonry Infilled Reinforced Concrete Buildings Utilizing Verified Masonry Properties in Applied Element Method

机译:应用单元法验证的砌体性能评估钢筋混凝土砌体房屋的抗震性能。

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Present study aims on evaluating the seismic performances of existing Masonry Infilled Reinforced Concrete (MIRC) buildings commonly found in many South and Southeast Asian countries utilizing appropriate masonry properties in Applied Element Method (AEM) models. First, masonry constituents and masonry composite properties were deter-mined for different masonry meshes through extensive parametric studies verified through the experimental results of masonry prisms under uniaxial compression and half scaled masonry infilled RC frames under in-plane cyclic load. Next, the established infill properties were utilized for time history dynamic analysis of an existing 8-storied MIRC building for different AEM models including soft story, retrofitted soft story, infills in all floors and bare RC frames ne-glecting stiffness contribution of infills. The analytical results revealed: 1) the unpredicted soft story column failure compared to the similar bare RC frame, 2) the inability of infills to improve the seismic performance of the surrounding RC frames, 3) the effectiveness of steel plate jacketing for preventing soft story failure and, 4) the effect of the exist-ence of overhead water tanks on the alteration of seismic behavior of RC buildings.
机译:本研究旨在利用应用元素方法(AEM)模型中的适当砌体特性,评估在许多南亚和东南亚国家普遍发现的现有砌体填充钢筋混凝土(MIRC)建筑物的抗震性能。首先,通过广泛的参数研究确定了不同砌体网格的砌体成分和砌体复合特性,这些参数研究是通过单轴压缩砌体棱镜和面内循环荷载下半比例砌体填充RC框架的实验结果验证的。接下来,已建立的填充属性用于对现有的8层MIRC建筑物进行时程动态分析,以用于不同的AEM模型,包括软层,翻新软层,所有楼层的填充以及裸露的RC框架,而忽略了填充的刚度贡献。分析结果表明:1)与类似的裸钢筋混凝土框架相比,软层柱无法预测的失效; 2)填充物无法改善周围钢筋混凝土框架的抗震性能; 3)钢板护套防止软层的有效性失效; 4)高架储水罐的存在对钢筋混凝土建筑物抗震性能变化的影响。

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