Li Youyi, Tang Tianhao
The Institute of Power Drive and Control, Department of Electronic Engineering, Shanghai Maritime University, 1550 Haigang Ave., Shanghai 201306, China.
Entropy (Basel). 2021 Oct 30;23(11):1435. doi: 10.3390/e23111435.
The Organic Rankine Cycle (ORC) is a well-established way to recover energy from a single waste heat source. This paper aims to select the suitable configuration, number of loops, and working fluids for the Multi-Loop ORC (MLORC) by using multi-objective optimization. The thermodynamic and economic performance of MLORC in three various configurations was analyzed. Multi-objective optimizations of the series and parallel MLORC using different working fluid groups were conducted to find the optimal configuration, number of loops, and working fluid combination. The analysis results show that the series-parallel MLORC performed the worst among the three configurations. The optimization results reveal that series MLORC has a higher exergy efficiency than the parallel MLORC. The exergy efficiency of the optimal solution in series dual-loop, triple-loop, and quadruple-loop ORC is 9.3%, 7.98%, and 6.23% higher than that of parallel ORC, respectively. Furthermore, dual-loop is the optimal number of cycles for recovering energy from a single heat source, according to the grey relational grade. Finally, the series dual-loop ORC using cyclohexane\cyclohexane was the suitable configuration for utilizing a single waste heat source. The exergy efficiency and levelized cost of electricity of the series dual-loop ORC with the optimal parameters are 62.18% and 0.1509 $/kWh, respectively.
有机朗肯循环(ORC)是一种从单一废热热源回收能量的成熟方法。本文旨在通过多目标优化为多回路ORC(MLORC)选择合适的配置、回路数量和工作流体。分析了MLORC在三种不同配置下的热力和经济性能。对串联和并联MLORC使用不同工作流体组进行了多目标优化,以找到最佳配置、回路数量和工作流体组合。分析结果表明,串并联MLORC在三种配置中性能最差。优化结果表明,串联MLORC的火用效率高于并联MLORC。串联双回路、三回路和四回路ORC中最优解的火用效率分别比并联ORC高9.3%、7.98%和6.23%。此外,根据灰色关联度,双回路是从单一热源回收能量的最佳循环次数。最后,使用环己烷/环己烷的串联双回路ORC是利用单一废热热源的合适配置。具有最优参数的串联双回路ORC的火用效率和度电成本分别为62.18%和0.1509美元/千瓦时。