二氧化碳和氢氟烯烃混合物作为空调系统中R410A的环保替代品的能源和冷却性能

Bukola Olalekan Bolaji, Deborah Olufunke Bolaji, S. T. Amosun
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摘要

空调和制冷系统是消耗大量能源的电器,间接导致全球变暖。此外,R410A最初是作为空调系统中臭氧消耗制冷剂的替代品而开发的,由于其高全球变暖潜能值(GWP)及其对气候的有害影响,已逐步淘汰。除了制冷剂的高GWP问题外,能源消耗也是一个重要的问题。因此,在寻找替代制冷剂时必须考虑到新制冷剂的能源效率,以确保它们不会导致电源上温室气体排放量的增加。因此,本文研究了四种新型多组分和生态友好型制冷剂混合物的能源和冷却性能,它们的成分中含有二氧化碳和氢氟烯烃,作为空调系统中R410A的替代品。利用相关热力学方程和REFPROP软件进行计算分析。结果表明,新共混物(R445A、R455A、R470B和R470A)在冷却应用中具有理想的低压缩比和高传热性能。该共混物还表现出较低的压缩机能量输入和较低的比冷却能。R455A的平均性能系数比参考制冷剂R410A高24.6%。在253 ~ 293 K温度范围内,R470B、R455A和R470A的单位体积制冷量分别比R410A高1.3、6.0和12.6%。总体而言,在四种新的替代混合物中,R455A具有较低的压缩比、压缩机能量和比冷能量,是空调系统中R410A的最佳替代品。R455A还具有最高的COP和相对较高的单位体积制冷量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy and cooling performance of carbon-dioxide and hydrofluoroolefins blends as eco-friendly substitutes for R410A in air-conditioning systems
Air-conditioning and refrigeration systems are electrical appliances that use a huge amount of energy and contribute indirectly to global warming. Also, R410A which was initially developed as a substitute for ozone-depleting refrigerants in the air-conditioning systems has been phase-out due to its high global warming potential (GWP) and the resulting harmful effect on the climate. In addition to the issue of refrigerant high GWP, energy consumption is a significant issue. The energy efficiency of new refrigerants must then be considered in the search for alternative refrigerants to ensure that they do not lead to an increase in greenhouse gas generation at the power source. Therefore, this paper investigates the energy and cooling performance of four new multi-components and ecologically friendly refrigerant blends that contained carbon dioxide and hydrofluoroolefins in their compositions as substitutes for R410A in air-conditioning systems. Relevant thermodynamic equations and REFPROP software were employed for the computational analysis. The results indicated that the new blends (R445A, R455A, R470B and R470A) exhibited a desirable low compression ratio and high heat transfer for cooling applications. The blends also exhibited low compressor energy input and low specific cooling energy. R455A has an average coefficient of performance (COP) of 24.6% above that of the reference refrigerant (R410A). The cooling capacity per unit volume for R470B, R455A and R470A across a temperature range of 253 to 293 K are higher by 1.3, 6.0, and 12.6%, respectively than that of R410A. Generally, among all the four new substitute blends, the overall assessment revealed R455A as the best replacement for R410A in air-conditioning systems due to its superior performance in terms of its low compression ratio, compressor energy and specific cooling energy. R455A also has the highest COP and relatively high cooling capacity per unit volume.
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