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Efficient three-dimensional seismic analysis of a high-rise building structure with shear walls

机译:带有剪力墙的高层建筑结构的高效三维地震分析

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In many cases, high-rise building structures are designed as a framed structure with shear walls that can effectively resist horizontal forces. Many of the high-rise apartment buildings recently constructed in the Asian region employ the box system that consists only of reinforced concrete walls and slabs as the structural system. In most of these structures, a shear wall may have one or more openings for functional reasons. It is necessary to use a refined finite element model for an accurate analysis of a shear wall with openings. But it would take a significant amount of computational time and memory if the entire building structure were subdivided into a finer mesh. Thus an efficient method that can be used for the analysis of a high-rise building structure with shear walls regardless of the number, size and location of openings in the wall is proposed in this study. The proposed method uses super elements, substructures and fictitious beams. Static and dynamic analyses of example structures with various types of opening were performed to verify the efficiency and accuracy of the proposed method. It was confirmed that the proposed method can provide results with outstanding accuracy requiring significantly reduced computational time and memory.
机译:在许多情况下,高层建筑结构被设计为带有剪力墙的框架结构,可以有效抵抗水平力。亚洲地区最近建造的许多高层公寓楼都采用仅由钢筋混凝土墙和楼板组成的箱式系统作为结构系统。在大多数这些结构中,出于功能原因,剪力墙可以具有一个或多个开口。为了精确分析带开口的剪力墙,有必要使用改进的有限元模型。但是,如果将整个建筑结构细分为更精细的网格,则将需要大量的计算时间和内存。因此,本研究提出了一种有效的方法,可用于分析带有剪力墙的高层建筑结构,而与墙中开口的数量,大小和位置无关。所提出的方法使用了超单元,子结构和虚拟梁。对具有各种开口类型的示例结构进行了静态和动态分析,以验证所提出方法的效率和准确性。证实了所提出的方法可以提供具有显着精度的结果,需要显着减少计算时间和存储空间。

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