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Progressive collapse analysis of a high-rise building considering the effect of an outrigger-belt lateral load resisting system

机译:考虑支腿带侧向荷载系统影响的高层建筑渐进倒塌分析

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The effect of an outrigger and belt system, mainly provided for resisting lateral wind and seismic loads, on the progressive collapse analysis of a 52 floor high rise building is presented in this paper. The main lateral load resisting element of the building is reinforced concrete core located at the centre of the building. In addition to the RC core walls, two outrigger and belt systems are introduced at the top of the building and at its mid-height. Each system is made of four steel trusses connecting the facade columns to the central reinforced concrete core. Each outrigger system is provided by a belt truss that links all columns on the facade to the outrigger trusses. The purpose of progressive collapse analysis in this paper is to study alternative load paths that eliminates the total collapse and minimizes the local damage and failure of the building. Nonlinear dynamic progressive collapse analysis is carried out where selected columns at the ground level are suddenly removed. This simulates the effect of accidental explosion near the building facade. The nonlinear dynamic analysis is carried out using ELS software (Extreme Loading for Structures) utilizing applied element technique. Different factors that affect the building response to progressive collapse scenarios are studied and presented m this work.
机译:本文介绍了主要用于抵抗侧向风和地震载荷的支腿和皮带系统对52层高层建筑的渐进倒塌分析的影响。建筑物的主要横向抗力元件是位于建筑物中心的钢筋混凝土芯。除了RC核心墙外,在建筑物的顶部及其中间高度还引入了两个外伸支架和皮带系统。每个系统由四个钢桁架组成,这些桁架将立面柱连接到中央钢筋混凝土芯。每个支腿系统均由皮带桁架提供,该桁架将立面上的所有立柱连接到支腿桁架。本文进行渐进式倒塌分析的目的是研究可消除总倒塌并最小化建筑物的局部损坏和破坏的替代荷载路径。进行非线性动态渐进倒塌分析,其中突然移除了地面上的选定列。这模拟了建筑物立面附近意外爆炸的影响。非线性动态分析是使用ELS软件(结构的极端荷载)利用应用的单元技术进行的。在这项工作中,研究并介绍了影响建筑物对渐进倒塌情景的响应的不同因素。

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