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A simplified analytical model of radiative heat transfer in open cell foams

机译:开放式电池泡沫中辐射热传递的简化分析模型

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A simplified one-dimensional analytical model of radiative heat transfer in foams is presented, based on the idea of dividing the porous material into layers at the pore level and then modeling each layer of the porous material as an equivalent semi-transparent, absorbing and reflecting plane. Compared to existing models, the model proposed in this paper has the advantage of explicitly accounting for the geometry of the foam and the radiative energy fluxes, at the same time ensuring self-consistency and offering the computational lightness of analytical models, without sacrificing the mathematical simplicity of the formulation. Using a regular cubic lattice representation and assuming diffuse radiation, straightforward analytical correlations are derived to evaluate the characteristics both of single layers of foam and of finite thickness samples, accounting for various boundary conditions. The predictions of the model are in good agreement with experimental data taken from the literature.
机译:基于将多孔材料分成孔径层的层,然后将各个多孔材料层的思想作为等效半透明,吸收和反射,提出了一种简化的泡沫辐射传热的辐射传热的分析模型。飞机。与现有型号相比,本文提出的模型具有明确核对泡沫和辐射能量通量的几何形状的优点,同时确保自我一致性和提供分析模型的计算亮度,而不会牺牲数学制剂的简单性。使用常规立方晶格表示和假设漫射辐射,推导出直接分析相关性以评估单层泡沫和有限厚度样品的特性,占各种边界条件。该模型的预测与从文献中取出的实验数据吻合良好。

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