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Modeling of Heat Transfer in Low-Density EPS Foams

机译:低密度EPS泡沫传热模型

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Expanded polystyrene (EPS) foams are one of the most widely used thermal insulators in the building industry. Owing to their very low density, both conductive and radiative heat transfers are significant. However, only few studies have already been conducted in the modeling of heat transfer in this kind of medium. This is due to their complex porous structure characterized by a double-scale porosity which has always been ignored by the previous works. In this study, we present a model of one-dimensional steady state heat transfer in these foams based on a numerical resolution of the radiation-conduction coupling. The modeling of the conductive and radiative properties of the foams takes into account their structural characteristics such as foam density or cell diameter and permits us to study the evolution of their equivalent thermal conductivity with these characteristics. The theoretical results have been compared to equivalent thermal conductivity measurements made on several EPS foams using a flux-meter apparatus and show a good agreement.
机译:膨胀聚苯乙烯(EPS)泡沫是建筑行业中使用最广泛的绝热材料之一。由于它们的密度很低,因此传导和辐射传热都很重要。然而,在这种介质的传热建模中,只有很少的研究。这是由于其复杂的多孔结构具有双重尺度的孔隙率,而先前的研究一直忽略了它们。在这项研究中,我们基于辐射-传导耦合的数值分辨率,提出了这些泡沫中的一维稳态传热模型。泡沫的导电和辐射特性的建模考虑了它们的结构特征,例如泡沫密度或泡孔直径,并允许我们研究具有这些特征的等效热导率的演变。已将理论结果与使用通量计设备对几种EPS泡沫进行的等效热导率测量进行了比较,并显示出良好的一致性。

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