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Fire-thermomechanical interface model for performance-based analysis of structures exposed to fire

机译:火灾热力学接口模型,用于基于性能的火灾结构分析

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This paper presents an interface model to perform a one-way coupling between a fire simulation (CFD model) and a structural analysis (FEM model) aimed at performance-based analysis of structures exposed to,fire. The Fire-Thermomechanical Interface (FTMI) model is capable of processing the results from a fire. simulation to properly account for the heat transfer by convection and radiation, between the fire and the exposed surfaces, based on Adiabatic Surface Temperature concept. The methodology is presented and verified against simple cases, and the improvements required to achieve complex geometries are introduced. An application is also presented evaluating the fire-thermomechanical behavior of an H-profile column under a localized fire. At the end of the analysis, it is possible to obtain the structural behavior under specific fire scenarios. An automated procedure is created to surpass the isolated member analysis, allowing the simulation of the behavior of global structures discretized with shell and/or solid elements under fire conditions. In these examples, both solid and shell elements are used to demonstrate that the procedure can be applied to evaluate the global behavior of structures. The results also suggest that the methodology can provide reliable performance-based analyses. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种界面模型,以执行火灾模拟(CFD模型)和结构分析(FEM模型)之间的单向耦合,旨在对暴露于火灾的结构进行基于性能的分析。火灾热力学接口(FTMI)模型能够处理火灾结果。模拟,以根据绝热表面温度概念适当地考虑对流和辐射在火和裸露表面之间的传热。介绍了该方法并针对简单情况进行了验证,并介绍了实现复杂几何形状所需的改进。还提出了一个应用程序,用于评估局部燃烧情况下H型钢柱的火灾热力学行为。分析结束时,有可能获得特定火灾情况下的结构性能。创建了一个自动程序以超越孤立的成员分析,从而可以模拟在火灾条件下以壳和/或固体元素离散化的整体结构的行为。在这些示例中,实体和壳单元均用于说明该过程可用于评估结构的整体行为。结果还表明该方法可以提供可靠的基于性能的分析。 (C)2016 Elsevier Ltd.保留所有权利。

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