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Concrete Exposed to Fire: From Fire Scenario to Structural Response

机译:暴露于火灾的混凝土:从火情况到结构反应

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In this paper a model for the analysis of concrete structures exposed to fire, based on Porous Media Mechanics, is coupled with a computational fluid dynamics model. To show the capability of this strategy the numerical simulation of a simple concrete slab exposed to fire is presented. The thermal loads as well as the moisture exchange between the structure surface and the environment are calculated by means of computational fluid dynamics program. Thanks to this strategy the structural verification is no longer based on the standard fire curves commonly used in the engineering practice, but it is directly related to a realistic fire scenario. With the simple example proposed, it is possible to highlight how the localized thermal load generates a nonuniform pressure rise in the material, which results in an increase of the structure stress state and of the spalling risk. Spalling is likely the most dangerous collapse mechanism for a concrete structure. Numerical results of various sections of the slab exposed to fire are presented, showing the effects of a more realistic distribution of the thermal loads with respect to the ones obtained by using the standard fire curves. This coupling approach still represents a "one way" strategy, i.e. realized without considering explicitly the exchange of boundary conditions from the structure to the fluid. This results in an approximation, but from physical point of view the current form of the solid-fluid coupling is considered sufficiently accurate in this first phase of the research.
机译:在本文中,基于多孔介质力学,涉及到火灾暴露于火灾的混凝土结构的模型与计算流体动力学模型相结合。为了表明该策略的能力,提出了暴露于火灾的简单混凝土板的数值模拟。通过计算流体动力学程序计算热负荷以及结构表面和环境之间的水分交换。由于这种策略,结构验证不再基于工程实践中常用的标准火灾曲线,但它与现实的火灾情景直接相关。利用所提出的简单示例,可以突出局部热负荷在材料中产生非均匀压力的升高,这导致结构应力状态和剥落风险的增加。剥落可能是混凝土结构最危险的折叠机制。提出了暴露于火焰的平板的各个部分的数值结果,显示了通过使用标准火曲线所获得的热负荷对热负荷的更现实分布的影响。这种耦合方法仍然代表“一种方式”策略,即在不考虑从结构到流体的边界条件的交换的情况下实现了“单向”策略。这导致近似,但是从物理观点来看,在该研究的第一阶段中被认为是充分准确的固体流体耦合的形式。

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