首页> 外文会议>10th IIR-Gustav Lorentzen conference on natural working fluids >PERFORMANCE ENHANCEMENT OF CO_2 REFRIGERATION SYSTEMS BY THERMOELECTRIC SUBCOOLER
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PERFORMANCE ENHANCEMENT OF CO_2 REFRIGERATION SYSTEMS BY THERMOELECTRIC SUBCOOLER

机译:热电分流器提高CO_2制冷系统的性能

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摘要

In this paper, the performance of the small capacity CO_2 refrigeration cycle was enhanced by the use ofrnthermoelectric modules for subcooling. When compared to the basic CO_2 transcritical cycle, operatingrnTE modules between the gas cooler outlet and the subcooler results in improved efficiency. As the TErnmodules subcool the CO_2 to below ambient temperature as it leaves the gas cooler, the enthalpy of thernCO_2 entering the expansion valve is decreased, which enhances the system capacity and the coefficient ofrnperformance (COP). A prototype of the TE subcooler was designed and constructed. Experimentalrninvestigation reveals that the TE subcooler system capacity and COP at a TE current of 6A are 24.1%rnand 12.5% respectively higher than those of the baseline. When the current is increased to 12A, the TErnsubcooler system capacity and COP are 35.1% and 0.5% respectively higher than those of the baseline.rnThis means that either the system capacity or the COP can be maximized through controlling the currentrnof the TE supply.
机译:在本文中,通过使用热电模块进行过冷来提高小容量CO_2制冷循环的性能。与基本的CO_2跨临界循环相比,在气体冷却器出口和过冷器之间运行teTE模块可提高效率。当TErnmodules离开气体冷却器时将CO_2过冷至环境温度以下时,进入膨胀阀的rnCO_2的焓降低,从而提高了系统容量和性能系数(COP)。设计并构造了TE过冷器的原型。实验研究表明,TE电流为6A时,TE过冷器系统的容量和COP分别比基线高24.1%和12.5%。当电流增加到12A时,TErn过冷器系统容量和COP分别比基线高35.1%和0.5%。这意味着可以通过控制TE电源的电流来最大化系统容量或COP。

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  • 会议地点 Delft(NL)
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    Glacierbay, 2930 Faber Street, Union City, CA 94587, USA;

    Center for Environmental Energy EngineeringUniversity of Maryland, College Park, 4164 Glenn L. Martin Hall Bldg., MD 20742, USA, Tel: (301) 405-5247, E-mail: yhhwang@umd.edu;

    Center for Environmental Energy EngineeringUniversity of Maryland, College Park, 4164 Glenn L. Martin Hall Bldg., MD 20742, USA;

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