不同地震危险性评估对阿联酋迪拜钢板剪力墙建筑设计和性能的影响

M. AlHamaydeh, Laith Elayyan
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引用次数: 3

摘要

钢板剪力墙(SPSW)系统是近年来加入设计规范的许多抗侧力系统(LFRS)之一。它由一系列钢板或墙壁(称为腹板)组成,这些钢板或墙壁被焊接成钢梁和钢柱框架(水平和垂直边界元素,HBE和VBE)。当受到侧向力时,这些腹板对角线弯曲并沿着相反的对角线形成张力场。在巨大的地震荷载下,这些板被允许沿着张力对角线屈服,这在地震活动期间提供了必要的能量耗散。阿联酋的迪拜市已经成为国际和地区的商业中心,拥有数百座高层建筑。迪拜面临的地震风险程度尚未在研究人员和结构工程从业者之间达成一致。本文介绍了将在阿联酋迪拜建造的采用SPSW的标准20层钢结构在研究人员报告的三种不同级别地震活动下的设计和分析。不同设计的结构性能通过OpenSees平台的非线性单调推覆分析进行量化。
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Impact of diverse seismic hazard estimates on design and performance of Steel Plate Shear Walls buildings in Dubai, UAE
The Steel Plate Shear Walls (SPSW) system is one of many Lateral Force Resisting Systems (LFRS) added to the design codes over recent years. It comprises an array of steel plates or walls (referred to as the Web) that are welded into a steel beams and columns frame (Horizontal and Vertical Boundary Elements, HBE and VBE). When subjected to lateral forces, these web plates buckle diagonally and develop a tension field along the opposite diagonal. Under substantial earthquake loads, these plates are allowed to yield along the tension diagonal which provides the necessary energy dissipation during seismic activity. The city of Dubai, UAE has become an international and regional business hub featuring hundreds of tall building structures. The degree of seismic risk that Dubai faces is yet to be agreed upon amongst researchers and structural engineering practitioners. This paper presents the design and analysis of a standard 20-story steel structure employing SPSW to be built in Dubai, UAE subjected to three varying levels of seismic activity reported by researchers. The structural performance of the varying designs is quantified via nonlinear monotonic pushover analyses in the OpenSees platform.
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