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Finite element analysis of various methods for protection of concrete structures against spalling during fire

机译:各种保护混凝土结构免遭火灾剥落的方法的有限元分析

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摘要

A mathematical model of hygro-thermo-mechanical phenomena in heated concrete, treated as multiphase porous material is briefly presented. Some modifications necessary to analyse high–temperature performance of a concrete containing the PP-fibres have been introduced, experimentally validated and applied for analysis of performance of a concrete tunnel lining during a 10-MW fire and the ISO standard fire. Three methods for protecting concrete structures against excessive degradation in fire conditions have been numerically analysed by means of the computer model. The analysed protection methods are based either upon application on a structure surface of a reflective layer, or covering it with a protective layer made of a very porous concrete or an addition of the PP fibres to the concrete mix. Efficiency of these methods has been numerically analysed in thermal conditions corresponding to the ISO-834 standard fire. The results obtained show that even relatively simple methods, like application a protective layer or increasing the surface reflectance, can retard to some extent concrete degradation during a fire.
机译:简要介绍了被视为多相多孔材料的加热混凝土中湿热力学现象的数学模型。已经介绍了一些分析含PP纤维的混凝土的高温性能所必需的修改,并进行了实验验证,并将其应用于分析10兆瓦火灾和ISO标准火灾期间混凝土隧道衬砌的性能。借助于计算机模型,对保护混凝土结构免于火灾条件下过度退化的三种方法进行了数值分析。所分析的保护方法是基于在反射层的结构表面上施加或基于由非常多孔的混凝土制成的保护层覆盖它,或将PP纤维添加到混凝土混合物中。这些方法的效率已在与ISO-834标准火灾相对应的热条件下进行了数值分析。获得的结果表明,即使是相对简单的方法,例如施加保护层或提高表面反射率,也可以在一定程度上阻止火灾期间混凝土的降解。

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