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首页> 外文期刊>Engineering Applications of Computational Fluid Mechanics >A numerical and experimental study on the energy efficiency of a regenerative Heat and Mass Exchanger utilizing the counter-flow Maisotsenko cycle
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A numerical and experimental study on the energy efficiency of a regenerative Heat and Mass Exchanger utilizing the counter-flow Maisotsenko cycle

机译:逆流Maisotsenko循环再生热和质量交换器能效的数值和实验研究

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In this work, a numerical and experimental study is performed to evaluate the affecting variables on energy efficiency of a novel regenerative evaporative cooler utilizing dew-point indirect evaporative cooling. For first time, an investigation is experimentally and numerically carried out to study the effects of the channel number on important parameters such as product temperature and humidity ratio. Investigations are carried out for five configurations with various channel numbers. The comparison of the numerical and experimental results is obtained and well accuracy observed. For the five studied configurations, the results show that with an increase in the number of channels, the outlet temperature decreases. For an inlet air flow rate of 100–600?m~(3)/h, the cooled outlet flow temperature changes to the range of 23.4–30.7°C, 19.7–28.3°C, 18–26.4°C, 17.2–25°C and 16.6–23.8°C. For the configurations with finned channels, the percentage of increase in produced air temperature reaches 11.5% for HMX B, 18.6% for HMX C, 23.4% for HMX D and 26.9% for HMX E, as compared with HMX A.
机译:在这项工作中,进行数值和实验研究以评估利用露点间接蒸发冷却的新型再生蒸发冷却器的能效的影响变量。首次进行实验和数值进行调查,以研究通道数对产品温度和湿度比等重要参数的影响。调查是为具有各种频道号的五种配置进行。获得了数值和实验结果的比较,观察到井的精度。对于五个研究的配置,结果表明,随着通道数量的增加,出口温度降低。对于100-600Ω·m〜(3)/ h的入口空气流速,冷却出口流量温度变化为23.4-30.7°C,19.7-28.3°C,18-26.4°C,17.2-25 °C和16.6-23.8°C。对于翅片通道的配置,与HMX A相比,HMX B的产生气温增加的百分比达到11.5%,对于HMX C,HMX D的23.4%,26.9%,而HMX E.

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