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首页> 外文期刊>International journal of air-conditioning and refrigeration >APPLICATION OF HYDROCARBON BASED REFRIGERANTS FOR AIR CONDITIONING IN INDONESIA
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APPLICATION OF HYDROCARBON BASED REFRIGERANTS FOR AIR CONDITIONING IN INDONESIA

机译:碳氢制冷剂在印尼的空调应用

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Electrical energy consumption in air conditioning systems reaches 60% to 70% of the total electric energy consumption in buildings. Therefore, saving electrical energy consumption in air conditioning systems would have a significant impact on the national electrical energy consumption. Currently, the air conditioning sectors were having a dilemma on finding the alternative substitutes for CFC and HCFC refrigerants which are proven to cause destruction of the ozone layer and contribute to the effects of global warming. This paper will discuss the problems faced by an Article 5 country similar to Indonesia in phasing-out HCFC especially in air conditioning and refrigeration sectors. This paper will also discuss the possibility to use hydrocarbon-based refrigerants, which have zero ozone depletion potential (ODP) and low global warming potential (GWP), in air conditioning sectors. Some results of field applications of this refrigerant will be reported, and in general it can be concluded that the air conditioning retrofitted with hydrocarbon refrigerant consumes 10%-20% less electrical energy. Mixture of R-290 and R-134a was also investigated. R-134a is used to reduce the flammability of R-290 and to make the saturation pressure close to R-22. The results show that at composition of 0.6 R-290/0.4 R-134a mole fractions, the mixture behave as an azeotrope refrigerant mixture and can be used for R-22 replacement. At this composition, lower flammability limit (LEL) is 3693%, which is higher than pure R-290. Hence, the refrigerant mixture can be classified as less flammable A2 class refrigerant. The performance test shows that the refrigerant mixture can be used as a drop-in refrigerant in the R-22 machine. The measurement of refrigeration capacity and compressor input work at the same chilled water temperature shows that the calculated COP of the refrigerant mixture is better than R-22's but lower than R-290's.
机译:空调系统中的电能消耗达到建筑物中总电能消耗的60%至70%。因此,节省空调系统中的电能消耗将对国家的电能消耗产生重大影响。当前,空调部门在寻找CFC和HCFC制冷剂的替代替代品方面存在两难选择,事实证明,这些替代品会破坏臭氧层并助长全球变暖。本文将讨论类似于印度尼西亚的第5条国家在逐步淘汰氟氯烃方面,尤其是在空调和制冷行业中所面临的问题。本文还将讨论在空调行业中使用零臭氧消耗潜能值(ODP)和低全球变暖潜能值(GWP)的碳氢基制冷剂的可能性。将报告这种制冷剂在现场应用的一些结果,并且总体上可以得出结论,用碳氢化合物制冷剂进行改装的空调消耗的电能要少10%-20%。还研究了R-290和R-134a的混合物。 R-134a用于降低R-290的可燃性并使饱和压力接近R-22。结果表明,在0.6 R-290 / 0.4 R-134a摩尔分数的组成下,该混合物表现为共沸制冷剂混合物,可用于R-22替代。在这种组成下,可燃性下限(LEL)为3693%,高于纯R-290。因此,制冷剂混合物可以被归类为不易燃的A2级制冷剂。性能测试表明,该制冷剂混合物可用作R-22机器中的嵌入式制冷剂。在相同的冷却水温度下对制冷量和压缩机输入功的测量表明,计算出的制冷剂混合物的COP优于R-22,但低于R-290。

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