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The energy and exergy analysis of counter-flow regenerative evaporative cooler

机译:逆流蓄热式蒸发冷却器的能量和火用分析

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Recently the regenerative evaporative cooler (REC) has drawn great attention from researchers because it can cool the intake air below the wet-bulb temperature and approaching its dew point temperature. For further understanding of the heat and mass transfer occurred in a counter-flow REC, a novel mathematical model is developed based on the law of energy conservation and the principle of the thermodynamic theory. The proposed mathematical model is validated against experimental data from literature. The parametric study is performed to investigate the performance of the REC under different operating and geometrical conditions. It is found that the exergy destruction and exergy efficiency ratio of the REC are strongly influenced by the intake air velocity, the working to intake air ratio and channel gap, followed by the channel length. The working to intake air ratio choosing from 0.3 to 0.4 is appropriate in order to achieve better thermal performance with permissible level of thermodynamic cost. Moreover, the results obtained in this paper reveal that the best thermal performance does not correspond to the best thermodynamic performance. Thus, both the first and second law of thermodynamics should be considered for a comprehensive analysis.
机译:最近,再生式蒸发冷却器(REC)引起了研究人员的极大关注,因为它可以将进气冷却到低于湿球温度并接近露点温度。为了进一步了解逆流REC中发生的传热和传质,基于能量守恒定律和热力学理论的原理,开发了一种新型的数学模型。所提出的数学模型已针对来自文献的实验数据进行了验证。进行参数研究是为了研究REC在不同操作和几何条件下的性能。研究发现,REC的(火用)破坏和(火用)效率比受进气速度,工作与进气之比和通道间隙以及通道长度的影响很大。为了获得更好的热性能和允许的热力学成本水平,从0.3到0.4的进气比是合适的。此外,本文获得的结果表明,最佳热性能并不对应于最佳热力学性能。因此,应该综合考虑热力学的第一定律和第二定律。

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