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Exergoeconomic optimisation of basic and regenerative triple-evaporator combined power and refrigeration cycles

机译:基本和蓄热式三蒸发器的动力和制冷循环的能效经济优化

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摘要

This paper deals with reconstruction of conventional combined cooling and power (CCCP) cycle for producing simultaneous power and cooling outputs for triple applications of freezing, refrigeration and air-conditioning. The proposed systems are integrated from organic Rankine cycles (ORCs) and an ejector refrigeration cycle (ERC). Single- and multi-objective optimisations of the proposed systems are conducted from energy, exergy and exergoeconomic viewpoints, using genetic algorithm (GA). The results of optimisation revealed that the thermal efficiency of the basic triple-evaporator CCP (B-TECCP) and regenerative TECCP (R-TECCP) systems can be improved by 7.48% and 6.23%, respectively, whereas the exergy efficiency of the proposed systems is enhanced by 10.83% and 6.84%, respectively. In addition, the sum unit cost of product of the system is also decreased by 11.88% and 15.19% for B-TECCP and R-TECCP systems, respectively, through this optimisation mode. At last, a comprehensive parametric study is performed to give more information from operating conditions of the proposed systems for designers.
机译:本文讨论了常规制冷和动力联合循环(CCCP)的重构,以产生同时用于制冷,制冷和空调三重应用的动力和制冷输出。所提出的系统由有机朗肯循环(ORC)和喷射器制冷循环(ERC)集成而成。拟议系统的单目标和多目标优化是使用遗传算法(GA)从能源,火用和能经济角度进行的。优化结果表明,基本三蒸发器CCP(B-TECCP)和再生TECCP(R-TECCP)系统的热效率分别可提高7.48%和6.23%,而拟议系统的火用效率分别提高了10.83%和6.84%。此外,通过这种优化模式,B-TECCP和R-TECCP系统的系统产品总和单位成本也分别降低了11.88%和15.19%。最后,进行了全面的参数研究,为设计人员提供了所建议系统的运行状况信息。

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