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Design and performance analysis of a regenerative evaporative cooler for cooling of buildings in arid climates

机译:干旱气候下用于建筑物冷却的蓄热式蒸发冷却器的设计和性能分析

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Evaporative cooling has been considered a low energy consumption process that often is associated with displacement ventilation and passive cooling strategies of buildings. While significant energy savings can be accrued from using evaporative cooling, there are many design challenges to improve the processes of heat and mass transfer and reduce design complexities. This paper seeks to advance the design of evaporative cooling through building and testing a novel regenerative evaporative cooler prototype. It proposes a design that integrates heat pipe and porous ceramic tube modules as an alternative to plate heat exchangers. The paper describes design arrangement of the cooler, a mathematical model and laboratory test results. Under controlled laboratory test conditions, the measured performance indices of wet bulb effectiveness, specific cooling capacity and coefficient of performance (COP) were determined as 0.8, 140 W per m2of wet ceramic surface area and 11.43 respectively. Furthermore, experimental results show that under typical ambient conditions commensurate with that prevailing in arid climates, the cooler air supply temperature was as much as 14 °C below that of the ambient air.
机译:蒸发冷却被认为是一种低能耗的过程,通常与建筑物的置换通风和被动冷却策略有关。尽管使用蒸发冷却可以节省大量能源,但是在改善传热和传质过程并降低设计复杂性方面存在许多设计挑战。本文旨在通过构建和测试新型的再生式蒸发冷却器原型来推进蒸发冷却的设计。它提出了一种将热管和多孔陶瓷管模块集成在一起的设计,以替代板式热交换器。本文介绍了冷却器的设计安排,数学模型和实验室测试结果。在受控的实验室测试条件下,测得的湿球效率,比冷却能力和性能系数(COP)的性能指标分别确定为0.8、140 W / m2湿陶瓷表面积和11.43。此外,实验结果表明,在与干旱气候相当的典型环境条件下,较冷的空气供应温度比环境空气的温度低14C。

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