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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A comparative study on exergetic, exergoeconomic and exergoenvironmental assessments of two internal auto-cascade refrigeration cycles
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A comparative study on exergetic, exergoeconomic and exergoenvironmental assessments of two internal auto-cascade refrigeration cycles

机译:两种内部自动级联制冷循环的exergetic,Exergo经济和exergoencironment评估的比较研究

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摘要

This research makes a comparative study of an internal auto-cascade refrigeration system (IACRS), i.e. system 1, and a novel ejector enhanced IACRS, or system 2, employing a pressure-constant ejector at the entrance of the phase separator based on exergy, exergoeconomic and exergoenvironmental analyses. R600 is used as a convenient refrigerant in the proposed systems. Compressor mass flow rate (M-1) condenser inlet temperature (T-3), refrigeration evaporator inlet temperature (T-6) and freezer evaporator inlet temperature (T-11) are chosen as substantial design parameters to evaluate the performance of both proposed systems. The simulation and comparative study show that at all ranges of selected parameters, the average energy and exergy coefficient of performance, i.e. COPEn and COPE, respectively, obtained for system 2 have a drastic increment relative to system I. Moreover, outcomes identify system 2 as a more economic system due to its low total product cost rate (C-P,C-tot) at which nil with 20.95% decrement of C-P,C-tot has a significant positive effect. Further results show that the environmental impact is improved by applying system 2 so that the total product environmental impact rate associated with exergy (3p,tot) for m(1), T-3, T-6 and T-11 decreases within 21.52%, 10.59%, 8.96% and 8.35% respectively, as compared with system 1. (C) 2017 Elsevier Ltd. All rights reserved.
机译:该研究采用了内部自动级联制冷系统(IACR),即系统1和新型喷射器增强的IACR或系统2的比较研究,该系统2在相位分离器的入口处基于DeSergy, exergo经济和exergoencironmental分析。 R600用作所提出的系统中的方便制冷剂。压缩机质量流量(M-1)冷凝器入口温度(T-3),选择制冷蒸发器入口温度(T-6)和冷冻机蒸发器入口温度(T-11)作为大量设计参数,以评估两个提出的性能系统。模拟和比较研究表明,在所有选定参数范围内,分别为系统2获得的平均能量和性能系数,即Copen和Cope,相对于系统I具有急剧增量。此外,结果识别系统2为由于其总产品成本率(CP,C-TOT)的含量较低,因此含有20.95%的CP,C-TOT具有显着的积极效果,因此更具经济体系。进一步的结果表明,通过施加系统2,改善了环境影响,使得与Deervery(3P,TOT)的总产环境冲击率为M(1),T-3,T-6和T-11相关的总产值在21.52%内降低与系统1.(c)2017 Elsevier有限公司保留所有权利,分别为10.59%,8.96%和8.35%。(c)2017年elestvier有限公司。

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