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- W2086093413 abstract "Advances in technology in recent years have increased energy consumption which has led to global warming. In line with the Paris agreement, the optimal use of energy is a way to overcome the issue. Air conditioning and refrigeration systems are among the sectors that account for a large share of energy consumption. This has elicited the implementation of optimization of refrigeration systems.In this research, the aim is to utilize the radiator waste heat of an engine with a volume of 2000 cc in an ejector refrigeration cycle as an alternative to conventional refrigeration cycles in vehicles. For this purpose, the ejector refrigeration cycle is modeled with energy, exergy, and eco-exergy equations and the ejector is modeled with dynamic gas equation. After modeling, effective parameters, namely, condenser outlet temperature, inlet temperature and pressure to the secondary nozzle, and inlet temperature to the primary nozzle are optimized using TOPSIS multi-objective optimization method. The selected objectives were reducing system capital investment cost, and increasing, COP, and the ejector performance (ω) criterion.It was found that the ejector refrigeration cycle reduces the electric power and capital investment cost by 0.743 kW and 0.0028 $/h, respectively, and also increases the COP by 0.917 compared to the conventional refrigeration systems in the vehicle." @default.
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- W2086093413 date "2013-03-01" @default.
- W2086093413 modified "2023-09-23" @default.
- W2086093413 title "Corrigendum “Temperature control of a cabin in an automobile using thermal modeling and fuzzy controller” [Applied Energy 97 (2) (2012) 860–868]" @default.
- W2086093413 doi "https://doi.org/10.1016/j.apenergy.2012.11.055" @default.
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