Energy, exergy, environmental (3E) analyses and multi-objective optimization of vortex tube coupled with transcritical refrigeration cycle

IF 3.5 2区 工程技术 Q1 ENGINEERING, MECHANICAL International Journal of Refrigeration-revue Internationale Du Froid Pub Date : 2024-07-23 DOI:10.1016/j.ijrefrig.2024.07.014
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Abstract

The present study deals with the thermodynamic investigation of vortex tube coupled with trans-critical vapour compression refrigeration cycle (TVTC), followed by environmental analysis and multi-objective optimization. In this research, effect of various operating and design parameters is studied on the performance of TVTC. Furthermore, a comparison is made between the outcomes of TVTC and simple trans-critical vapour compression refrigeration cycle (TVCR). Results show that the optimum gascooler pressure for TVTC is observed to be lower than that of TVCR. Also, the cooling capacity and COP of TVTC are observed to be 10.1 % to 21.1 % and 2.3 % to 11.3 %, respectively, greater than those of TVCR. Moreover, the exergetic efficiency of TVTC is 2.3 % to 11.3 % higher than that of TVCR for the investigated range of evaporator and gascooler exit temperatures. The environmental penalty cost (per unit cooling capacity) of TVTC is 3.5 % to 12.2 % lower than that of TVCR. Furthermore, the coefficient of structural bond is calculated in order to choose the most sensitive parameters for system's performance. Additionally, genetic algorithm-based multi-objective optimization has been performed, with the evaporator temperature serving as the primary determining factor in establishing the optimal solution. This finding can guide the development of TVTC-based systems for a wide range of applications.

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涡流管耦合跨临界制冷循环的能量、能效、环境(3E)分析和多目标优化
本研究涉及涡流管耦合跨临界蒸汽压缩制冷循环(TVTC)的热力学研究,以及环境分析和多目标优化。在这项研究中,研究了各种运行和设计参数对 TVTC 性能的影响。此外,还对 TVTC 和简单的跨临界蒸汽压缩制冷循环(TVCR)的结果进行了比较。结果表明,TVTC 的最佳气体冷却器压力低于 TVCR。此外,TVTC 的制冷量和 COP 分别比 TVCR 高 10.1% 至 21.1% 和 2.3% 至 11.3%。此外,在调查的蒸发器和气体冷却器出口温度范围内,TVTC 的能效比 TVCR 高 2.3% 至 11.3%。TVTC 的环境惩罚成本(单位冷却能力)比 TVCR 低 3.5% 至 12.2%。此外,还计算了结构结合系数,以选择对系统性能最敏感的参数。此外,还进行了基于遗传算法的多目标优化,其中蒸发器温度是确定最佳解决方案的主要决定因素。这一发现可以为基于 TVTC 的系统的开发提供指导,应用范围十分广泛。
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来源期刊
CiteScore
7.30
自引率
12.80%
发文量
363
审稿时长
3.7 months
期刊介绍: The International Journal of Refrigeration is published for the International Institute of Refrigeration (IIR) by Elsevier. It is essential reading for all those wishing to keep abreast of research and industrial news in refrigeration, air conditioning and associated fields. This is particularly important in these times of rapid introduction of alternative refrigerants and the emergence of new technology. The journal has published special issues on alternative refrigerants and novel topics in the field of boiling, condensation, heat pumps, food refrigeration, carbon dioxide, ammonia, hydrocarbons, magnetic refrigeration at room temperature, sorptive cooling, phase change materials and slurries, ejector technology, compressors, and solar cooling. As well as original research papers the International Journal of Refrigeration also includes review articles, papers presented at IIR conferences, short reports and letters describing preliminary results and experimental details, and letters to the Editor on recent areas of discussion and controversy. Other features include forthcoming events, conference reports and book reviews. Papers are published in either English or French with the IIR news section in both languages.
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