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首页> 外文期刊>American Journal of Environmental Sciences >Analysis of eco friendly refrigerants usage in air-conditioner.
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Analysis of eco friendly refrigerants usage in air-conditioner.

机译:分析空调中环保型制冷剂的使用。

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Problem statement: There are two types of global warming contributions through refrigeration and air conditioning systems. The first one is the Direct Global Warming Potential (DGWP) due to the emission of refrigerants and their interaction with heat radiation. The second one is the Indirect Global Warming Potential (IDGWP) due to the emission of Carbon Dioxide (CO2) by consuming the energy that is generated through the combustion of fossil fuels. Most of refrigerants used in vapor Compression system were Chlorofluorocarbon (CFCs) and Hydro Chlorofluorocarbon (HCFCs) which contains chlorine and if any leakage in the system, these gases will go up and reach stratosphere. The chlorine atoms in the gases will act as a catalyst to destroy ozone layer and cause ozone depletion which causes health hazards, global warming, melting of polar ice caps and drought. Hence, it is necessary to minimize the Global warming and Ozone depletion. The refrigerant R22 widely used in the air-conditioners is a major Contributor of Chlorofluorocarbons (CFCs) which cause irreparable loss to the ozone layer and has to be replaced. Approach: To conserve the energy and minimize the global warming, the systems should be designed as more energy efficient and also to minimize Ozone depletion, the eco friendly refrigerants are to be selected and tested as alternative refrigerants to R22. Hence, a window air conditioner of 3.5 kW capacity fitted with Electronic Expansion Valve (EEV) instead of capillary tube as an expansion device, was tested for its performance with the selected eco friendly refrigerants R407C and R290 as an alternative to R22 under fixed indoor and outdoor chamber temperatures in the experimental set up and varying the EEV opening. Results: It has been observed from the experimental studies that when the smaller capacity R22 window air conditioner with EEV is retrofitted with R407C and R290, compared to the performance given by R22, the Coefficient Of Performance (COP) given by R407C and R290 is improved in the range of 4.8-7.1 and 8.0-12.3% respectively and the Energy Efficiency Ratio (EER) is increased by 4.2-6.9% for R407C and 6.4-10.8% for R290. Conclusion: The performance of Electronic Expansion Valve (EEV) with eco friendly refrigerant R290 in the given air conditioner shows a positive effect in terms of COP and energy efficiency and enables the industry to favorably displace the R22 and other types of expansion devices.
机译:问题陈述:通过制冷和空调系统,全球变暖有两种类型。第一个是由于制冷剂的排放及其与热辐射的相互作用而导致的直接全球变暖潜能值(DGWP)。第二个是间接全球变暖潜能值(IDGWP),它是由于消耗化石燃料燃烧产生的二氧化碳而排放的二氧化碳(CO 2 )。蒸气压缩系统中使用的大多数制冷剂是氯氟烃(CFC)和氢氯氟烃(HCFC),其中含有氯,如果系统中有泄漏,这些气体将上升并到达平流层。气体中的氯原子将充当破坏臭氧层的催化剂,并导致臭氧消耗,这对健康造成危害,全球变暖,极地冰盖融化和干旱。因此,有必要使全球变暖和臭氧消耗最小化。广泛用于空调的制冷剂R22是氯氟烃(CFC)的主要贡献者,氯氟烃会给臭氧层造成不可弥补的损失,因此必须更换。方法:为了节约能源并最大程度地减少全球变暖,应将系统设计为更具能源效率,并最大程度地减少臭氧消耗,应选择环保的制冷剂并作为R22的替代制冷剂进行测试。因此,在固定的室内和室外环境下,使用选定的环保型制冷剂R407C和R290作为R22的替代品,对装有电子膨胀阀(EEV)而不是毛细管作为膨胀装置的3.5 kW窗口式空调进行了性能测试。在实验装置中设置室外室温度并改变EEV开口。结果:从实验研究中观察到,当用R407C和R290改造具有EEV的小容量R22窗式空调时,与R22给出的性能相比,R407C和R290给出的性能系数(COP)有所提高分别在4.8-7.1和8.0-12.3%的范围内,R407C的能效比(EER)提高了4.2-6.9%,R290的能效比提高了6.4-10.8%。结论:在给定的空调中,具有生态友好型制冷剂R290的电子膨胀阀(EEV)的性能在COP和能源效率方面显示出积极的作用,并使业界能够很好地取代R22和其他类型的膨胀装置。

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