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Numerical Assessment of Connections with Reduced Beam Sections under Fire-Following an Earthquake Using Continuously Updated Boundary Condition

机译:使用持续更新的边界条件,在地震下的射击截面截面下的连接数值评估

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The occurrence of fires following an earthquake in steel structures is an important scenario that can threaten the integrity of structural systems. Structural loss due to such combined events has been observed and reported. Despite such evidence, minimal studies have been conducted on the combined effects of the hazards on steel structures or any type of structures for that matter. The aim of this paper is to provide insight into the local behavior of reduced beam section connections during fire following earthquakes when representative time-dependent boundary conditions are utilized to simulate the restraint provided by the surrounding frame during the fire. This is achieved through investigating the response of two beam-column subassemblies designed for the Los Angeles region using 3D nonlinear finite element analyses. The models are developed and analyzed under several representative loading scenarios with continuously updated boundary conditions that characterize the nonlinear stiffness of the remainder of the frame. The results are presented and their implications discussed to protect against the hazard of fire following earthquakes in steel moment frames with reduced beam sections.
机译:火灾中的钢结构地震后发生的可能威胁结构体系的完整性的重要场景。已经观察到和报道了这种组合事件引起的结构损失。尽管存在这样的证据,但已经对钢结构危害的综合影响或任何类型的结构进行了最小的研究。本文的目的是当代表随时间变化的边界条件被用来模拟火期间,由环绕的框架提供的约束下列地震火灾期间提供的洞察降低梁部连接的局部行为。这是通过研究使用3D非线性有限元分析为洛杉矶区域设计的两个光束柱子组件的响应来实现的。在几个代表性加载方案下开发和分析模型,其中具有连续更新的边界条件,该边界条件表征了框架的其余部分的非线性刚度。提出了结果,并讨论其影响,以防止钢矩框架中地震造成的火灾危害。

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