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A Comparative Study of Different Positioning of Reinforced Concrete Shear Walls in Soft Storey Building Subjected to Acheh Eartquake Event

机译:Acheh Earquake事件软层面建筑中钢筋混凝土剪力墙不同定位的对比研究

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The system of shear wall as an additive in retrofitting of soft storey structure has been investigated in previous and present research to improve the strength of structures due to seismic load. The aim of this research is to conduct comparative study on Equivalent Static Analysis (ESA), Response Spectrum Analysis (RSA) and Time History Analysis (THA) of structure between reference sample and shear wall systems was performed in order to determine the strength and stiffness of soft storey structure. The locations and shapes of shear wall system were used as retrofitting method. The retrofitting of soft storey structure was done for fives (5) models consist of one (1) model without shear wall as reference sample and the other four (4) models of different location and shape of shear wall systems. The models were tested by using SAP200 computer software to performed strength of structure. The models had been checking by value of lateral displacement and base shear resistance. Based on the collected data, the additional of shear wall was found to increase the strength and stiffness of soft storey structure. The swastika shape of shear wall and provide at centre experienced the maximum base shear resistance in all X, Y and Z direction and the least displacement compared to other model. Through this study had shown the improvement of strength of soft storey structure by applying shear wall system as an additive strength and stiffness of structure due earthquake event.
机译:在先前的研究中,研究了剪力墙作为补充结构改装的添加剂,以提高由于地震载荷引起的结构强度。本研究的目的是对等效静态分析(ESA)进行比较研究,进行参考样品和剪切墙系统之间的结构的响应谱分析(RSA)和时间历史分析(THA),以确定强度和刚度软层结构。剪切墙系统的位置和形状用作改造方法。为Fives(5)型型号进行了软层结构的改造,其中一个(1)型型号,没有剪切壁作为参考样品和其他四(4)型的不同位置和剪切墙系统的形状。通过使用SAP200计算机软件来测试结构的强度来测试模型。该模型一直在横向位移和基础抗剪切电阻的值检查。基于收集的数据,发现额外的剪切壁增加了软层结构的强度和刚度。与其他模型相比,Swastika的剪力墙和在中心提供的剪力墙和Z方向的最大基础剪切电阻以及最少的位移。通过本研究通过将剪力墙系统施用作为由于地震事件的结构增强强度和刚度和刚度,提高了软层面结构的强度。

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