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Fire safety assessment of super tall buildings: A case study on Shanghai Tower

机译:超高层建筑的消防安全评估-以上海中心大厦为例

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Shanghai Tower is an existing super high-rise building composed of mega frame-core-outrigger lateral resisting systems. Its structural safety in fire has been given great attention. This paper presents an independent review of the performance of Shanghai Tower in case of fire. Two fire scenarios: standard fires and parametric fires have been considered. The fire resistance of key component, including the concrete core, mega columns, the composite floor, outrigger trusses and belt trusses were examined first. Their real fire resistance periods proved to be far beyond the design fire resistance. The components with weak fire resistance such as peripheral steel columns and web members of belt trusses were then removed to study the resistance of the residual structure against progressive collapse. The results show that Shanghai Tower has a minimum of 3h fire resistance against fire-induced progressive collapse. The concrete components have smaller residual displacements compared to the steel components. It is recommended, for the design of other similar structures, that effective fire protection should be provided for the outrigger trusses to guarantee the connection between the core and mega columns.
机译:上海中心大厦是一幢现存的超高层建筑,由巨型框架芯支腿横向抵抗系统组成。其在火灾中的结构安全性受到了高度重视。本文对上海大厦发生火灾时的性能进行了独立评估。已经考虑了两种火灾情况:标准火灾和参数火灾。首先检查了关键构件的耐火性,包括混凝土芯,巨型柱,复合地板,支腿桁架和皮带桁架。他们的实际耐火时间证明远远超出了设计耐火时间。然后将耐火性较弱的组件(例如外围钢柱和带状桁架的腹板)移除,以研究残余结构对渐进塌陷的抵抗力。结果表明,上海中心大厦对起火引起的逐步倒塌的耐火性最低为3h。与钢构件相比,混凝土构件的残余位移较小。对于其他类似结构的设计,建议为支腿桁架提供有效的防火保护,以确保岩心和巨型柱之间的连接。

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