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The seismic shear of ductile cantilever wall systems in multistorey structures

机译:多层结构悬臂悬臂墙系统的地震剪切

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摘要

The distribution of seismic base shear demand among ductile flexural cantilever walls, comprising the lateral load resisting system of a multistorey building, is studied. It is shown that the base shear force demand depends on the sequence of hinge formation at the wall bases, and this in turn depends on the relative wall lengths. Hence, the routine elastic approach in which the shear forces are allocated per relative flexural rigidity or (when some consideration is given to plastic hinge formation) to moment capacity at the wall base, may appreciably underestimate the shear force demand on the walls, particularly the shorter (usually the more flexible) ones. A simple procedure yielding the results of 'cyclic' pushover analysis is proposed to predict the peak seismic wall forces for a given total base shear when plastification is confined to the wall base. The effects of plastic hinges developing at higher floors on (1) shear distribution among the walls and (2) the in-plane floor forces are also considered. Two numerical examples are presented to demonstrate the main points made.
机译:研究了包括多层建筑的侧向抗力系统在内的挠性挠性悬臂墙之间地震基础剪力需求的分布。结果表明,基础剪力的要求取决于墙基处铰链形成的顺序,而这又取决于相对的墙长。因此,常规的弹性方法是根据壁的基础上的相对抗弯刚度或(当考虑塑性铰链的形成时)分配剪力到墙基础处的弯矩能力,这可能会低估墙的剪力需求,特别是墙面越短(通常越灵活)。提出了一种简单的方法,得出“循环”推覆分析的结果,以预测当塑化作用局限于墙基础时,给定总基础剪力的峰值地震墙力。还考虑了在较高楼层上形成的塑料铰链对(1)墙间剪切分布和(2)平面内地板力的影响。给出两个数值示例,以说明要点。

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