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Performance-Based Structural Fire Engineering of Steel Building Structures: Design-Basis Compartment Fires

机译:基于性能的钢制建筑结构的结构消防工程:设计基室火灾

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This paper focuses on the performance-based structural fire engineering of steel buildings subjected to realistic design-basis fire scenarios. Medium-rise office buildings were designed in accordance with U.S. building codes and standards. These buildings were designed with steel gravity frames and different lateral force resisting systems: (1) interior rigid core walls, and (2) perimeter moment resisting frames. Code-based prescriptive approaches were used to design the passive fire protection for the structural members of the steel buildings. The structural performance of these buildings, when subjected to realistic design-basis compartment fire scenarios (one-hour fire with cooling), was evaluated by conducting detailed nonlinear inelastic finite-element analysis of the complete three-dimensional (3D) building system. The analysis results indicated that steel gravity columns were the most vulnerable component, susceptible to inelastic buckling during the fire events. This could further precipitate the partial or overall collapse of the building during the fire event. This fundamental understanding of structural performance and vulnerabilities of the steel buildings (designed according to prescriptive approaches in codes) was leveraged to optimize the layout and distribution of passive fire protection in the steel buildings, leading to performance-based structural fire engineering. Detailed analysis results indicated that moving the fire protection from intermediate filler beams in the floor systems to the gravity columns improved structural performance, fire resistance, and collapse resistance of the steel buildings. This exemplifies the potential of performance-based fire protection engineering linked with structural engineering analyses to optimize design and economy.
机译:本文重点介绍基于钢制建筑的基于性能的结构消防工程,经过现实的设计基础火灾情景。中型办公楼符合美国建筑规范和标准设计。这些建筑物设计有钢重力框架和不同的侧向力抵抗系统:(1)内部刚性芯壁,和(2)周长抵抗框架。基于代码的规定方法用于设计钢制建筑结构成员的被动防火。通过进行完整的三维(3D)建筑系统的详细的非线性内弹性有限元分析,评估这些建筑物的结构性能。分析结果表明,钢重力柱是最脆弱的成分,易受火灾事件期间的无弹性屈曲。这可以在消防事件期间进一步沉淀建筑物的部分或整体崩溃。这一基本理解钢铁建筑的结构性和脆弱性(根据规范的规范方法设计),可利用优化钢制建筑中被动防火保护的布局和分布,从而实现基于性能的结构防火工程。详细的分析结果表明,从地板系统中的中间填充梁移动到重力柱中的防火保护改善了钢制建筑的结构性能,耐火和塌陷。这举例说明了基于性能的消防工程与结构工程分析相关的潜力,以优化设计和经济。

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