U型高层建筑剪力墙的有效位置分析

S. Mentari, R. Nursani
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引用次数: 2

摘要

印度尼西亚是地震多发的国家之一。除了恒载、叠加恒载和活载外,印度尼西亚的建筑设计还必须考虑地震荷载。在建筑结构中安装剪力墙作为特殊弯矩框架双体系是一种抗地震荷载的解决方案。然而,必须考虑剪力墙的位置,特别是在水平不规则的建筑物中。本研究旨在确定10层楼的u型结构的剪力墙在地震动力荷载下的最佳位置。本研究是利用软件对结构进行数值模拟。为了了解剪力墙的位置对建筑物的影响,对不同位置的剪力墙结构进行了几种变化。可见,各层的侧向位移和剪力是结构承受动力地震荷载的反应。位于建筑质心附近的剪力墙是最优变异,因为剪力墙的位置最靠近建筑的核心区,也就是建筑的旋转轴。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Effective Location of Shear Wall for High Rise Building with U – Configuration
Indonesia is one of the countries that is prone to earthquakes. In addition to the dead loads, superimposed dead loads, and live loads, the design of buildings in Indonesia must be concerned with earthquake loads. Installing shear walls in the building structure as the Special Moment Frame Dual System is one of a solution to withstand earthquake loads. However, the location of shear walls must be considered, especially in buildings with horizontal irregularities. This study aims to determine the optimum location of the shear walls in a 10-storey building that has U-configuration with dynamic earthquake loads. This research is a numerical simulation ran by modelling the structure with software. To know the effect of the shear wall’s location on a building, several variations of the shear wall configuration with different positions have been conducted. It can be seen the lateral displacement of each floor and the shear force are the response structure to withstand the dynamic earthquake loads. Shear walls that are located close to the center of mass of the building are the optimum variation because the position of the shear wall is the closest to the core area of the building, which is the rotational axis of the building.
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