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Performance Analysis of the Coupled System of Heat Pump and Double Stage Extraction Rankine Cycle

机译:热泵与二级萃取朗肯循环耦合系统的性能分析。

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摘要

This article presented a coupled system cycle (CSC) and the thermodynamic analysis of the CSC was employed, which was combined by the heat pump cycle and double stage extraction Rankine cycle. Taking CO_2 and R1234yf as heat pump refrigerants, the influence of cycle parameters on the thermal efficiency of the CSC (η_(csc)) was studied by contrast with that of the DSERC, and the performance analysis of the CSC was employed. The results show that increasing the evaporation temperature or decreasing the outlet temperature of gas cooler is beneficial to improve the η_(csc). The optimal compressor discharge pressure of the CSC with CO_2 refrigerant is 8.5 MPa, and correspondingly, the maximum COP is about 4.21 and the maximum η_(csc) is about 44.56%. Increasing the main steam parameters is beneficial to improve the η_(csc), and the η_(csc) is increased and then decreased with the increasing of the steam extraction coefficient. The conclusion is that the CSC has higher thermal efficiency and better performance, which provides a theoretical basis for improving the performance of power plant.
机译:本文介绍了一个耦合系统循环(CSC),并使用了CSC的热力学分析,该分析通过热泵循环和双级萃取兰金循环进行组合。以CO_2和R1234yf为热泵制冷剂,与DSERC对比研究了循环参数对CSC热效率η_(csc)的影响,并进行了CSC性能分析。结果表明,提高蒸发器温度或降低气体冷却器的出口温度有利于提高η_(csc)。具有CO 2制冷剂的CSC的最佳压缩机排气压力为8.5MPa,相应地,最大COP约为4.21,最大η_(csc)约为44.56%。增加主要蒸汽参数有利于提高η_(csc),并且随着蒸汽提取系数的增加,η_(csc)先增加后降低。结论是CSC具有更高的热效率和更好的性能,这为提高电厂的性能提供了理论基础。

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