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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental analysis of a multistage direct-indirect evaporative cooler using a straight heat pipe
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Experimental analysis of a multistage direct-indirect evaporative cooler using a straight heat pipe

机译:使用直热管的多级直接间接蒸发冷却器的实验分析

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摘要

Mechanical vapour compression air conditioning has advantages and drawbacks. The compressor used in this system increases energy consumption. In addition, the refrigerant used in this system harms the environment and contribute to ozone layer depletion. However, keeping a building at a comfortable temperature is still necessary and cannot be neglected. An evaporative cooler can be an alternative for overcoming this drawback because evaporative coolers are environment-friendly and have low operation costs. However, the evaporative cooler disadvantageous for producing air with a high relative humidity. The objective of this experiment is to evaluate the performance of a multistage direct-indirect evaporative cooler using a heat pipe in terms of saturation efficiency, the output air humidity, and sump water consumption. In this experiment, heat pipes are used as a pre-cooler in the first stage and for indirect cooling in the third stage. Tests are performed under different inlet temperatures ranging from 36 to 45 degrees C and an air flow rate ranging from 0.4 to 1.4 m/s. Thermocouple and humidity sensors are used to obtain the temperature and relative humidity values, respectively. The largest decrease in temperature is obtained when evaporation occurs during the first stage heat pipe at a 0.8 m/s air flow rate and 45 degrees C. The saturation efficiency and the output humidity are calculated and evaluated. The experiment shows that the first and second stages together can increase the saturation efficiency, but this process also increases the relative humidity of the outlet air and consumes more water than a single stage does. All three stages together produce a smaller decrease in temperature and relative humidity.
机译:机械蒸汽压缩空调具有优点和缺点。该系统中使用的压缩机增加了能量消耗。此外,该系统中使用的制冷剂损害了环境并有助于臭氧层耗尽。然而,在舒适的温度下保持建筑物仍然是必要的,并且不能被忽视。蒸发冷却器可以是克服该缺点的替代方案,因为蒸发冷却器是环保的并且具有较低的操作成本。然而,蒸发冷却器对于用高相对湿度产生空气的缺点是不利的。该实验的目的是评估多级直接间接蒸发冷却器的性能,在饱和效率,输出空气湿度和泥浆耗水方面使用热管。在该实验中,热管用作第一阶段中的预冷器,并且在第三阶段进行间接冷却。测试在36至45摄氏度范围内的不同入口温度下进行,空气流量范围为0.4至1.4m / s。热电偶和湿度传感器分别用于获得温度和相对湿度值。当蒸发在0.8M / S空气流速和45摄氏度下发生蒸发时,获得最大的温度降低。计算和评估饱和效率和输出湿度。该实验表明,第一和第二阶段一起可以提高饱和效率,但是该过程也增加了出口空气的相对湿度,并且比单个阶段更高的水。所有三个阶段一起产生较小的温度和相对湿度的降低。

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