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Unjuk Kerja Sistem Pendingin Adsorpsi dengan Pasangan Karbon Aktif-Metanol sebagai Adsorben-Adsorbat

机译:活性炭-甲醇对作为吸附剂-吸附剂的吸附冷却系统的性能

摘要

The air conditioning system that we used now may contribute to the effects of global warming and high energy consumption. One solution is to use the adsorption cooling system. Adsorption refrigeration system using activated carbon as adsorbent and methanol as adsorbate aims to replace the existing cooling system today. Targets to be achieved in this research is to analyze the adsorption cooling system that can replace vapor compression system that uses a refrigerant that can damage the ozone layer, with vartiation of desorption time and the mass flow rate of water in the evaporator to see its effect on the value of the COP on the system. Adsorbate or refrigerant used in the cooling system is methanol and adsorbent used in adsorption cooling system is activated carbon. The method used in this study is experiment. Experiment method conducted to determine the effect of desorption time variations and variations in the mass flow rate of water in the evaporator to the value of the COP. The highest COP is the variation of water mass flow rate 0,016 kg / s that is 0,099.
机译:我们现在使用的空调系统可能会导致全球变暖和高能耗。一种解决方案是使用吸附冷却系统。使用活性炭作为吸附剂和甲醇作为被吸附物的吸附式制冷系统旨在取代现有的现有冷却系统。这项研究的目标是分析吸附冷却系统,该系统可以取代蒸汽压缩系统,而蒸汽压缩系统使用的制冷剂会破坏臭氧层,并且解吸时间和蒸发器中水的质量流量会有所变化,以了解其效果。 COP在系统上的价值。冷却系统中使用的吸附剂或制冷剂是甲醇,吸附冷却系统中使用的吸附剂是活性炭。本研究中使用的方法是实验。进行实验方法以确定解吸时间变化的影响以及蒸发器中水的质量流量变化对COP值的影响。最高的COP是水质量流量的变化0.016 kg / s,即0.099。

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