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Thermodynamic and Thermo-economic Analysis of Integrated Organic Rankine Cycle for Waste Heat Recovery from Vapor Compression Refrigeration Cycle

机译:蒸汽压缩制冷循环废热回收综合有机兰峰循环的热力学和热经济分析

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In the present study, an integrated air-conditioning-organic Rankine cycle (i-AC-ORC) system which combines a vapour compression cycle and an organic Rankine cycle is proposed. An organic Rankine cycle system is applied to recover the waste heat rejected by the condenser of air-conditioning system. The selection of optimal fluid pairfor the air-conditioning subsystem and organic Rankine cycle subsystem is investigated. Based on thermodynamic (energy and exergy) and thermo-economic analysis, R600a-R123 is chosen as the fluid pair for this integrated air-conditioning-organic Rankine cycle system. The thermodynamic model has been programmed using Engineering Equation Solver (EES). The combined coefficient of performance (COP) of integrated system can be improved from 3.10 to 3.54 compared with that of the standalone air-conditioning subsystem. The organic Rankine cycle subsystem can yield1.41 kW of net electricity with a thermal efficiency of 3.05%. The organic Rankine cycle subsystem operates with an exergy efficiency of 39.30%. In addition, energetic and exergetic performances of the integrated system are studied with variable external conditions.
机译:在本研究中,提出了结合蒸汽压缩循环和有机朗肯循环的集成空调 - 有机朗肯循环(I-AC-ORC)系统。应用有机朗肯循环系统以回收空调系统的冷凝器拒绝的废热。研究了空调子系统和有机朗肯循环子系统的最佳流体对的选择。基于热力学(能量和电力)和热经济分析,选择R600A-R123作为该集成空调 - 有机朗肯循环系统的流体对。热力学模型使用工程方程求解器(EES)编程。与独立空调子系统相比,集成系统的集成系统的组合系数(COP)可以从3.10增加到3.54。有机朗肯循环子系统可以产生1.41千瓦的净电力,其热效率为3.05%。有机朗肯循环子系统的效率低39.30%。此外,通过可变的外部条件研究了集成系统的精力充沛和前进性能。

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