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논문검색

Design of closed-loop nitrogen Joule-Thomson refrigeration cycle for 67 K with sub-atmospheric device

초록

영어

Closed-loop J-T (Joule-Thomson) refrigeration cycle is advantageous compared to common open loop N2 decompression system in terms of nitrogen consumption. In this study, two closed-loop pure N2 J-T refrigeration systems with sub-atmospheric device for cooling High Temperature Superconductor (HTS) power cable are investigated. J-T cooling systems include 2-stage compressor, 2-stage precooling cycle, J-T valve and a cold compressor or an auxiliary vacuum pump at the room temperature. The cold compressor and the vacuum pump are installed after the J-T valve to create sub-atmospheric condition. The temperature of 67 K is possible by lowering the pressure up to 24 kPa at the cold part. The optimized hydrocarbon mixed refrigerant (MR) J-T system is applied for precooling stage. The cold head of precooling MR J-T have the temperature from 120 K to 150 K. The various characteristics of cold compressor are invstigated and applied to design parameter of the cold compressor. The Carnot efficiency of cold compressor system is calculated as 16.7% and that of vacuum pump system as 16.4%. The efficiency difference between the cold compressor system and the vacuum pump system is due to difference of enthalpy change at cryogenic temperature, enthalpy change at room temperature and different work load at the pre-cooling cycle. The efficiency of neon-nitrogen MR J-T system is also presented for comparison with the sub-atmospheric devices. These systems have several pros and cons in comparison to typical MR J-T systems such as vacuum line maintainability, system’s COP and etc. In this paper, the detailed design of the subcooled N2 J-T systems are examined and some practical issues of the sub-atmospheric devices are discussed.

목차

Abstract
 1. 서론
 2. 개방형 극저온 감압 냉각 시스템
 3. 폐쇄형 극저온 감압 냉각 시스템
  3.1. 개요
  3.2. 극저온 압축기를 사용한 폐쇄형 감압 냉각 시스템
  3.3. 감압 펌프를 사용한 폐쇄형 극저온 감압 냉각 시스템
  3.4. 시스템 고찰
 4. 결론
 ACKNOWLEDGMENT
 REFERENCES

저자정보

  • C. Lee Cryogenic Engineering Laboratory, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Korea
  • J. Lee Cryogenic Engineering Laboratory, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Korea
  • S. Jeong Cryogenic Engineering Laboratory, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Korea

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