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采用不同膨胀机构的跨临界CO2循环性能分析
引用本文:马娟丽,刘昌海,侯予.采用不同膨胀机构的跨临界CO2循环性能分析[J].低温工程,2012(1):33-39.
作者姓名:马娟丽  刘昌海  侯予
作者单位:西安交通大学动力工程多相流国家重点实验室 西安710049;西安交通大学能源与动力工程学院 西安710049
基金项目:国家自然科学基金项目(NO.50976082);高等学校博士学科点专项科研基金项目(20090201110006);中国科学院低温工程学重点实验室开放课题(CRYO201125)资助
摘    要:运用热力学第一定律和第二定律对跨临界CO2基本循环、膨胀机循环、喷射器循环和涡流管循环进行了分析,计算了各循环各个部件的损失,比较了各循环性能系数和总损失。计算结果表明,采用膨胀机、喷射器和涡流管等膨胀设备代替基本循环中的节流阀后,由于这些改进膨胀设备的损失小于基本循环节流阀的损失,同时改进循环中压缩机的损失小于基本循环的压缩机损失,从而减小了循环总损失,提高了循环的COP。膨胀机循环的COP远大于其它跨临界CO2循环,其次为喷射器循环和涡流管循环。

关 键 词:跨临界CO2循环  COP  损失

Thermodynamic analysis of transcritical CO2 refrigeration cycle with different expansion device
Ma Juanli , Liu Changhai , Hou Yu.Thermodynamic analysis of transcritical CO2 refrigeration cycle with different expansion device[J].Cryogenics,2012(1):33-39.
Authors:Ma Juanli  Liu Changhai  Hou Yu
Affiliation:1,2(1 State Key Laboratory of Multiphase Flow in Power Engineering,Xi’an Jiaotong University,Xi’an 710049,China)(2 School of Energy and Power Engineering,Xi’an Jiaotong University,Xi’an 710049,China)
Abstract:A comparative study on transcritical carbon dioxide refrigeration cycle respectively with throttling valve,expander,ejector and vortex tube was performed by the first and second laws of thermodynamics in theory.And these cycles’ COP and exergy losses were investigated.It is found that the exergy loss of other expansion devices is less than the exergy loss of throttling valve.The exergy loss of compressor in transcritical carbon dioxide refrigeration cycle with other expansion devices is less than the exergy loss of compressor in transcritical carbon dioxide refrigeration cycle with throttling valve.Thus the total exergy loss of these cycles with other expansion devices is less than the total exergy loss of cycle with throttling valve,and the COP of these cycles with other expansion devices is higher than the COP of cycle with throttling valve.The COP of transcritical carbon dioxide refrigeration cycle with expander is much higher than that of other cycles,then transcritical carbon dioxide refrigeration cycle with ejector and with vortex tube.
Keywords:Carbon dioxide transcritical cycle  COP  exergy loss
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