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EFFECTIVENESS OF PARALLEL FLOW MICROCHANNEL HEAT EXCHANGERS WITH EXTERNAL HEAT TRANSFER AND INTERNAL HEAT GENERATION

机译:外部传热和内部发热的平行流动微型通道热交换器的有效性

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In this paper the thermal pertormance of balanced parallel flow microchannel heat exchangers subjected to external heat transfer and internal heat generation have been numerically analyzed. The governing equations were numerically solved to obtain the axial temperatures of the fluids. The effectiveness of each fluid was determined using the inlet and outlet temperatures obtained from the numerical analysis. Moreover, the heat transferred between the individual fluids and the ambient as well as that between the fluids were numerically determined. The effectiveness depended on NTU, ambient temperature, thermal resistance between the ambient and the fluids, and the internal heat generation. When NTU is zero, the effectiveness depends only on the internally generated heat. At a particular ambient temperature and NTU the effectiveness of the hot and cold fluids degraded and improved, respectively, with increase in the internally generated heat. On the other hand with increase in ambient temperature the effectiveness of the hot and cold fluids decreased and increased, respectively, for a specific amount of heat generation. The model developed in this paper has been validated using existing models which consider the individual effect of external heat transfer and internal heat generation on the performance of parallel flow microchannel heat exchangers.
机译:在本文中,在数值分析了经受外部传热和内部发热的平衡平行流动微通道热交换器的热运动。在数量上解决了控制方程以获得流体的轴向温度。使用从数值分析中获得的入口和出口温度测定每个流体的有效性。此外,在单个流体和环境之间传递的热量以及流体之间的热量在数值上确定。效果取决于NTU,环境温度,环境温度,流体之间的热阻,以及内部发热。当NTU为零时,有效性仅取决于内部产生的热量。在特定的环境温度和NTU中,热和冷流体的有效性分别降解和改善,随着内部产生的热量增加。另一方面,随着环境温度的增加,热和冷流体的有效性分别为特定量的发热量分别降低和增加。本文开发的模型已经使用现有的模型进行了验证,该模型考虑了外部传热和内部发热对平行流动微通道热交换器的性能的单独效果。

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