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Thermodynamic analysis of transcritical CO_2 refrigeration cycle integrated with thermoelectric subcooler and ejector

机译:具有热电过冷器和喷射器集成的跨临界CO_2制冷循环的热力学分析

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摘要

In this paper, the new configuration of transcritical CO2 refrigeration cycle combined with a thermoelectric subcooler and an ejector (TES + EJE) is proposed. The thermoelectric subcooler is installed after the gas cooler in the transcritical CO2 refrigeration cycle with an ejector. Comparisons are carried out with the conventional transcritical CO2 refrigeration cycle (BASE), CO2 cycle with a thermoelectric subcooler (TES) and CO2 cycle with an ejector (EJE). Maximum cooling coefficient of performance (COPc) is obtained for the new TES + EJE cycle with a simultaneous optimization of subcooling temperature and discharge pressure. The improved new cycle exhibits higher COPc and lower discharge pressure compared with the other three cycles. Compared with the BASE cycle, the maximum COPc of the TES + EJE cycle is increased by 39.34% and the corresponding optimum discharge pressure is reduced by 8.01% under given operation conditions of 5 degrees C evaporation temperature and 40 degrees C gas cooler outlet temperature. The effects of the subcooling temperature, discharge pressure, gas cooler outlet temperature and evaporation temperature on the TES + EJE system performance are also discussed by energy and exergy analysis and results present here.
机译:在本文中,提出了与热电过冷器结合的跨临界CO2制冷循环的新配置和喷射器(TES + EJE)。通过喷射器在跨临界CO2制冷循环中的气体冷却器之后安装热电过冷器。使用传统的跨临界CO2制冷循环(基极),CO2循环与热电过冷器(TES)和带有喷射器(EJE)的CO2循环进行比较。为新的TES + EJE循环获得最大的性能(COPC),同时优化过冷温度和放电压力。与其他三个循环相比,改进的新循环表现出更高的COPC和降低的排出压力。与基循环相比,TES + EJE循环的最大COPC增加了39.34%,并且在给定的操作条件下,相应的最佳排出压力降低了8.01%,在5摄氏度蒸发温度和40℃的气体冷却器出口温度下。通过在此处提供的能量和出境的分析和结果,还讨论了过冷温度,排出压力,气体冷却器出口温度和蒸发温度的影响。

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