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A series of generalized correlations for predicting the thermal conductivity of composite materials packing with artificially designed filler shapes

机译:一系列的广义相关性,用于预测具有人工设计的填充物形状的复合材料填料的导热系数

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Enhancement of the thermal conductivity of composite materials has become more and more common in heat exchangers by applying artificially designed fillers. In this paper, the effective thermal conductivity of composite materials is investigated based on an extensive numerical study. The effective thermal conductivity of composite materials packing with different shapes of fillers are compared under the same volume fraction, thermal conductivity ratio and the thermal conduct resistance. The results indicate that the effective thermal conductivity of composite materials decreases as the thermal conduct resistance increases and the decline ratio will gradually slow down. Different shapes of fillers have different sensitivity degree on the thermal conduct resistance. Composite materials packing with the fillers which provide a longer path for the heat flow have a higher effective thermal conductivity than other types of fillers. A series of new generalized correlations is proposed by using the method of nonlinear regression. These new generalized correlations can be used at a wide range of thermal conductivity ratio (1 <= kappa <= 1000), thermal conductivity resistance (0 < R-c* <= 1) and volume fraction (0 < phi <= 0.2). (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过施加人工设计的填料,增强复合材料的导热率在热交换器中变得越来越常见。本文基于广泛的数值研究研究了复合材料的有效导热率。在相同的体积分数,导热比率和热敏电阻下比较具有不同形状的填料的复合材料包装的有效导热率。结果表明,随着热敏电阻的增加,复合材料的有效导热率降低,下降率将逐渐减慢。不同形状的填充剂对热敏电阻具有不同的灵敏度。用提供更长的热流路径的填充物填充的复合材料具有比其他类型的填料更高的有效导热率。通过使用非线性回归方法提出了一系列新的广义相关性。这些新的广义相关性可以在宽范围的导热率(1 <= Kappa <= 1000)中使用,导热性电阻(0

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