Performance Evaluation of a Wet Medium Made of Mangosteen Peels for a Direct Evaporative Cooling System

Nattawut Chaomuang, Thanut Nuangjamnong, Samak Rakmae
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Abstract

The present study aimed to investigate an alternative evaporative cooling pad material made from mangosteen peel (MP) waste. Mangosteen peels were used to fill a 150 mm thick mesh container with a packing density of 180 kg/m3. A wind tunnel was constructed and utilized to experimentally evaluate the cooling performance of this organic-waste-based pad under hot and humid conditions (31–34 °C and 55–70% RH). The performance parameters assessed included pressure drop, temperature drop, saturation effectiveness, cooling capacity, and coefficient of performance (COP). The influence of air velocity (0.7, 1.0, 1.4, and 1.8 m/s) on these parameters was also examined. The results revealed that the saturation effectiveness of the MP pad ranged from 53% to 77% within the considered air velocity range. The maximum temperature drop (4.6 °C), saturation effectiveness (77%), cooling capacity (0.6 kW), and COP (3.5) were achieved when the system operated at 1.4 m/s. A comparative study showed that, at this velocity, the MP pad provided performance nearly equivalent to that of the commercial cellulose paper pad, except for the pressure drop. This result affirms the potential of mangosteen peels as a suitable wet medium for evaporative cooling applications.
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山竹皮湿介质用于直接蒸发冷却系统的性能评价
本研究旨在研究以山竹皮(MP)废料为原料制备一种可替代的蒸发冷却垫材料。山竹皮被用来填充一个150mm厚的网眼容器,包装密度为180kg /m3。建立了一个风洞,并利用实验来评估这种有机废物基垫在湿热条件下(31-34°C和55-70% RH)的冷却性能。评估的性能参数包括压降、温度降、饱和效率、冷却能力和性能系数(COP)。研究了风速(0.7、1.0、1.4和1.8 m/s)对这些参数的影响。结果表明,在考虑的空气速度范围内,MP垫的饱和效率范围为53%至77%。当系统以1.4 m/s的速度运行时,达到了最大温度下降(4.6°C),饱和效率(77%),制冷量(0.6 kW)和COP(3.5)。一项比较研究表明,在这个速度下,MP垫提供的性能几乎等同于商业纤维素纸垫,除了压降。这一结果肯定了山竹皮作为蒸发冷却应用的合适湿介质的潜力。
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