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Evaluation of axial conduction effects and heat losses in counter-flow microscale heat exchangers

机译:逆流微尺度热交换器中轴向传导效应和热损耗的评价

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A gas to gas counter flow micro Heat Exchanger (HE) made of an array of microchannels and fabricated using a combination of silicon and glass wafers is studied. A divergence of the experimental results from the classical heat exchanger theory is observed due to discernible axial conduction effects and heat loss to the environment. Hence, device performance is evaluated using a modified NTU approach that includes also non-negligible axial conduction effects due to the relatively thick and thermally conductive separating wall. This along with replacement of the adiabatic boundary conditions at the separating wall ends with proper temperature conditions enables to evaluate the heat losses to the environment and to reduce the average error between theoretical model and experimental data by 56%. (C) 2017 Elsevier Ltd. All rights reserved.
机译:研究了由微通道阵列制成并使用硅和玻璃晶片的组合制成的气体计数器流动微型热交换器(HE)。 由于环境的轴向传导效应和热损失,观察到经典热交换器理论的实验结果的分歧。 因此,使用改进的NTU方法评估设备性能,该方法包括由于相对厚和导热分离壁而具有不可忽略的轴向传导效应。 这随着在分离墙的替换中的替换,具有适当的温度条件,使得能够评估环境的热量损失,并将理论模型与实验数据之间的平均误差减56%。 (c)2017 Elsevier Ltd.保留所有权利。

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