间接蒸发冷却器性能的改进*

Adham Ahmed Dalaf, Maki Haj Zidan, Aadel A. Al-Kumait
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引用次数: 0

摘要

非直接蒸发冷却是目前用于构建高效、低功耗空调系统的技术之一。建立了一个计算机程序来预测基于Maisotsenko循环(m循环)运行的间接蒸发冷却系统的有效性,以确定环境条件和适当的系统设计。研究了影响系统性能的几个变量;干侧风量从1050 cfm到1550 cfm不等,湿侧风量从700 cfm到1200 cfm不等。考虑到设计变量,通道的长度从50厘米变为100厘米。对于环境变量,研究了干湿温度变化对系统性能的影响。该实验于6月中旬进行,持续时间超过24小时。结果表明,当通道长度为80 cm时,为系统提供最佳风量的干侧风量为1050cfm,湿侧风量为900 cfm。结果表明,由于提克里特夏季炎热干燥的气候特点,该系统可以在提克里特应用,因为炎热干燥的气候会提高蒸发冷却效率©2018 JASET,国际学者和研究人员协会
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improving the Behavior of Indirect Evaporative Cooler*
ndirect evaporative cooling is one of the technologies currently used to build highly efficient air conditioning systems and low power consumption. A computer program was created to predict the effectiveness of an indirect-evaporation cooling system which operates based on Maisotsenko cycle (M-cycle) to determine the environmental conditions and proper system design. Several variables that affect the performance of the system have been studied; the amount of volumetric flow of air ranged from (1050 cfm) to (1550 cfm) for the dry side, and changing from 700 cfm to 1200 cfm from the wet side. With respect to design variables, the length of the channel changed from 50 cm to 100 cm. For environmental variables, the effect of changes in dry and wet temperature on system performance had been studied. The experiment was conducted in mid-June over 24 hours. The results showed that the best air supply provided for the best performance of the system is (1050cfm) for the dry side, while the wet side was (900 cfm), when the length of the channel is 80 cm. The results showed the possibility of applying this system in (Tikrit) because it is characterized by its hot and dry climate in the summer, as evaporative cooling efficiency increases in hot, dry climates © 2018 JASET, International Scholars and Researchers Association
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