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Exergy analysis of microchannel heat exchangers

机译:微通道换热器的漏极分析

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This study investigates the exergetic efficiencies of four plain microchannel heat exchangers under single-phase and two-phase flow conditions using de-ionised water as the working fluid. The friction factor and heat transfer coefficient data of microchannels are obtained using experimental studies from the literature. The exergetic efficiencies of microchannels are compared to reveal the effect of different geometrical parameters. The results showed that the microchannel aspect ratio is an insignificant parameter on the exergetic efficiency for single-phase flow conditions. However, the exergetic efficiency increased around 90% with the decreasing of the microchannel aspect ratio in two-phase tests. On the other hand, the microchannel heat exchanger having shorter heated length exhibited about 10% and 90% improved exergetic efficiency both in single-phase and two-phase regimes respectively. Moreover, the thermo-economic analysis has been performed in two-phase conditions to propose design guidelines for microchannel heat exchangers from the exergy and thermo-economic performance perspectives.
机译:本研究通过作为工作流体的去离子水在单相和两相流动条件下调查四种普通微通道热交换器的前进效率。使用来自文献的实验研究获得微通道的摩擦因子和传热系数数据。比较微通道的前进效率,以揭示不同几何参数的效果。结果表明,微通道纵横比对单相流动条件的逐步效率是一种微不足道的参数。然而,在两相试验中,逐步效率增加了大约90%的效率约为90%。另一方面,具有较短的加热长度的微通道热交换器在单相和两相方案中,分别显示出大约10%和90%的逐步效率。此外,在两阶段条件下进行了热经济分析,以提出微通道换热器的设计指南,从出境和热经济的表现的视角。

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