Padmavathy Saji Raveendran, Chockalingam Murugan Paradesi, Kamaraj Nithyanandhan, Glivin Godwin, Thangaraj Venkatesh, Moorthy Bharathiraja
Department of Mechanical Engineering, Kongu Engineering College, Perundurai, Tamilnadu, 638 060, India.
Department of Automobile Engineering, Kongu Engineering College, Perundurai, Tamilnadu, 638 060, India.
Environ Sci Pollut Res Int. 2022 Dec;29(57):85945-85954. doi: 10.1007/s11356-021-15875-2. Epub 2021 Aug 12.
Climate change is an important environmental issue that is causing global temperatures to rise. The primary environmental targets are to reduce carbon emissions and mitigate the impacts of climate change. The refrigeration system is a major emitter of greenhouse gases because it uses refrigerants with a high global warming potential. Due to its excellent thermophysical properties, the R134a is the most commonly used refrigerant in refrigeration systems; however, its high GWP will need to be disposed of earlier. To achieve global environmental objectives, conventional refrigerants need to be replaced with environmentally friendly and energy-efficient refrigerants. In the present work, a mathematical simulation has been carried out to check the performance of low-GWP refrigerant mixtures as environmentally friendly alternatives for R134a in a low-temperature system. In this study, a 190-L domestic refrigerator has been considered a low-temperature system. This simulation was performed using the MATLAB software, and the REFPROP database was used to obtain thermophysical properties of the refrigerants. The results showed that the COP of HFO mixtures decreased by 4-20% compared to R134a. The exergy efficiency of the R1234ze/R134a mixture improves by 4 to 16% as compared to the other mixtures and its performance is very similar to the R134a. Due to the environmentally friendly properties and flammability aspects, R1234ze/R134a (90/10) could be a good substitute for R134a in lower temperature applications and to satisfy the Montreal and Kyoto Protocol expectations.
气候变化是一个重要的环境问题,它导致全球气温上升。主要的环境目标是减少碳排放并减轻气候变化的影响。制冷系统是温室气体的主要排放源,因为它使用具有高全球变暖潜能值的制冷剂。由于其优异的热物理性质,R134a是制冷系统中最常用的制冷剂;然而,因其高全球变暖潜能值,需要尽早进行处理。为实现全球环境目标,传统制冷剂需要被环保且节能的制冷剂所替代。在当前工作中,已进行了数学模拟,以检验低全球变暖潜能值制冷剂混合物作为R134a在低温系统中的环保替代品的性能。在本研究中,一台190升的家用冰箱被视为一个低温系统。该模拟使用MATLAB软件进行,并使用REFPROP数据库获取制冷剂的热物理性质。结果表明,与R134a相比,氢氟烯烃混合物的性能系数下降了4%至20%。与其他混合物相比,R1234ze/R134a混合物的㶲效率提高了4%至16%,其性能与R134a非常相似。由于其环保特性和可燃性方面的因素,R1234ze/R134a(90/10)在低温应用中可能是R134a的良好替代品,并符合《蒙特利尔议定书》和《京都议定书》的期望。