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Modelling of confined masonry structure and its application for the design of multi-story building

机译:承压砌体结构建模及其在多层建筑设计中的应用

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The confined masonry (CM) structure has been commonly used in the construction of one-story buildings in Indonesia. Its application for multi-story buildings however, is not yet as popular as the alternative options. This research numerically investigated the behavior of confined masonry and its application for use as the main structure of multi-story buildings subjected to seismic loading. From the validation models it was revealed that, using shell element for masonry walls, reinforced concrete beams and tie-columns, the CM model mimic the load deformation curve of tested specimen better than that using frame and shell elements. The application of the modeling technique for the design of 3-story residential building using wall density index less than that suggested in the literature resulted in a safe and stiff structure. The wall stresses under design seismic load were still less than the wall strength and the drift ratio of the model was 0.06% much smaller than the limit of 0.2%. The maximum stress observed at the corners of wall opening justify the need for confinement along the opening.
机译:承压砌体(CM)结构已广泛用于印度尼西亚的一层建筑。但是,它在多层建筑中的应用还不如其他选择受欢迎。本研究从数值上研究了承压砌体的行为及其在多层建筑主体结构中的应用。从验证模型中可以看出,对于砌体墙,钢筋混凝土梁和系柱,使用壳单元,与使用框架和壳单元相比,CM模型更好地模拟了测试样本的荷载变形曲线。建模技术在三层住宅建筑设计中的应用(其墙密度指数小于文献中的建议)可产生安全而坚固的结构。设计地震荷载作用下的墙体应力仍小于墙体强度,模型的漂移比为0.06%,远小于0.2%的极限。在壁开口的拐角处观察到的最大应力证明需要沿着开口进行限制。

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