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首页> 外文期刊>JP journal of heat and mass transfer >PARAMETER ESTIMATION APPROACH APPLIED TO THE CHARACTERIZATION OF AN INTUMESCENT FIRE RETARDANT PAINT
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PARAMETER ESTIMATION APPROACH APPLIED TO THE CHARACTERIZATION OF AN INTUMESCENT FIRE RETARDANT PAINT

机译:适用于本能阻燃涂料特性的参数估计方法

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Intumescent paints are used as passive fire protection system in structural constructions. In particular they are widely used as fire retardant to protect structural steel elements. The thermal properties of intumescent paints are often unknown and difficult to be estimated since they vary significantly during the expansion process induced by the fire event; for this reason the fire resistance validation of commercial coatings is based on expensive, large-scale methods where each commercial coating/beam configuration has to be tested one by one. Adopting, instead, approaches based on the thermal modeling of the intumescent coating could provide a helpful tool to simplify the test procedure and to support the design of fire resistant structure as well. Inverse parameter estimation methodologies offer a robust tool to obtain this required information. The present investigation is focused on the assessment of such methodology applied to the restoration of the thermal properties which can be used to model the behavior of intumescent coatings. The parameter estimation procedure is first validated throughout its application to synthetic data derived with regard to an IPE 400 steel beam. The analysis is then completed throughout the application of the parameter estimation methodology to the experimental temperature history of protected steel beams subjected to a fire test according to EN 1363-1 and ENV 13381-4 standards. The results suggest that the approach suggested here, based on the modeling of the behavior of the intumescent paint by means of an equivalent thermal conductivity, could be suitable for quantifying the fire retardant effect of the protective coating.
机译:膨胀型涂料在结构建筑中用作被动防火系统。特别是,它们被广泛用作阻燃剂以保护结构钢元件。膨胀型涂料的热性能通常是未知的,难以估计,因为它们在火灾引起的膨胀过程中会发生很大变化。因此,商用涂料的耐火性验证基于昂贵的大规模方法,其中每种商用涂料/射束配置都必须一个接一个地进行测试。相反,采用基于膨胀型涂料热模型的方法可以提供一个有用的工具,以简化测试程序并支持耐火结构的设计。逆参数估计方法提供了一种强大的工具来获取此所需信息。本研究的重点是对这种方法的评估,该方法适用于热性能的恢复,可用于对膨胀型涂料的行为进行建模。参数估计程序首先在整个应用过程中得到验证,该程序适用于有关IPE 400钢梁的综合数据。然后,将参数估计方法应用于根据EN 1363-1和ENV 13381-4标准进行的耐火测试的受保护钢梁的实验温度历史记录中的整个分析过程完成。结果表明,此处提出的方法基于通过等效热导率对膨胀型涂料的行为进行建模的方法,可能适用于定量保护涂层的阻燃效果。

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