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Energy, exergy, and economic (3E) analysis of an organic Rankine cycle using zeotropic mixtures based on marine engine waste heat and LNG cold energy

机译:基于海洋发动机废热和LNG冷能的鸟类混合物,能量,暴力和经济(3E)分析了有机朗肯循环

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摘要

In this paper, thermo-economic performance comparisons between zeotropic mixtures and pure fluids are conducted via simulation for a parallel two-stage organic Rankine cycle (PTORC) driven by waste heat from LNG-fueled ship. The exhaust gas and jacket water of the marine engine work as heat sources, and the LNG fuel is considered as heat sink. R1150/R170 and R170/R1270 are employed as the working fluids in the first stage while R600a/R601 a and R600/R601 are used in the second stage. The effects of working fluids and pinch point temperature difference (PPTD) on the PTORC performances are studied from the viewpoint of the first and the second law of thermodynamics. It concludes that the zeotropic mixtures do not always exhibit an advantage over the pure fluids. The highest net power of the PTORC is 146.9 kW obtained with R1150-R600a. The results of PPTD indicate that LNG regasification should occur in the first-stage condenser. The maximum energy efficiency and exergy efficiency of the PTORC are 22.09% and 23.28%, respectively. The best economic performances of the PTORC are achieved with R170/R1270 (0.9/0.1, mass fraction)-R600. The total cost, payback period, and levelized energy cost vary in the range of 5.98-8.08 x 105 $, 4.58-5.18 years, and 0.065-0.074 $/kWh, respectively.
机译:在本文中,通过由LNG燃料船的废热驱动的平行两阶段有机朗肯循环(PTORC)进行跨粒混合物和纯净流体之间的热经济性能比较。船用发动机的废气和夹克水作为热源,并且LNG燃料被认为是散热器。 R1150 / R170和R170 / R1270用作第一阶段的工作流体,而R600A / R601a和R600 / R601在第二阶段使用。从热力学的第一和第二定律的观点来看,研究了工作流体和夹点温差(PPTD)对PTORC性能的影响。得出结论,延长混合物并不总是在纯净流体上表现出优势。 PTORC的最高净功率为146.9 kW,R1150-R600A获得。 PPTD的结果表明LNG再溶液应在第一级冷凝器中发生。 PTORC的最大能量效率和低通电效率分别为22.09%和23.28%。 PTORC的最佳经济性能与R170 / R1270(0.9 / 0.1,质量分数)-R600实现。总成本,投资回收期和较调格的能源成本分别在5.98-8.08 x 105 $,4.58-5.18岁和0.065-0.074 $ / kWh。

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