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Effects of Interior Partition Walls on Natural Period of High Rise Buildings

机译:内隔墙对高层建筑自然时期的影响

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In regions of low to moderate seismicity, serviceability limits states such as inter-story drift under wind load govern the design of the lateral load resisting structural systems of high rise buildings. The key objective in this regard is to provide adequate lateral stiffness to control lateral deffections and inter-story drifts. Current design practice assumes that the structural system alone provides lateral resistance against wind, the dominant load considered for countries like Australia. The contribution of nonstructural components (NSCs) such as interior partition walls on lateral stiffness is generally disregarded in the analysis of the buildings, even though it is commonly acknowledged that the NSCs play a significant role on the lateral stiffness of buildings. This technical note presents the results of a parametric study on the effects of NSCs, in particular, the effects of masonry interior partition walls on the fundamental period of buildings. The parameters considered in this study include: the number and length of walls, their material properties, the number of parallel moment resisting frames and the height of buildings. The results of this study indicate that interior walls can have significant effects on the lateral stiffness of buildings.
机译:在低至中等地震性的区域中,维修率限制在风负荷下的故事间漂移的状态控制高层建筑的横向载荷结构系统的设计。这方面的关键目标是提供足够的横向刚度来控制横向脱水和故事际漂移。目前的设计实践假设单独的结构系统提供横向抗风,所考虑的主要负荷如澳大利亚。在建筑物的分析中,通常忽略非结构组分(NSCs)的贡献,例如内部隔离壁在建筑物的分析中,即使通常承认NSCS在建筑物的横向刚度发挥着重要作用。本技术说明提出了参数研究NSCs的影响,特别是砌体内部隔断墙对建筑物基本时期的影响。本研究中考虑的参数包括:墙壁的数量和长度,它们的材料特性,抵抗框架的并行力矩的数量和建筑物的高度。该研究的结果表明,内壁对建筑物的横向刚度产生显着影响。

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