극저온 환경의 인쇄기판형 열교환기 열적성능에 대한 실험적 연구
The advantages of a printed circuit heat exchanger (PCHE) are the compactness and efficiency derived from its heat-transfer characteristics; furthermore, a PCHE for which a diffusion bonding method was used during production can be applied to extreme environments such as a cryogenic condition. In th...
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Published in | 설비공학 논문집, 27(8) Vol. 27; no. 8; pp. 426 - 431 |
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Main Authors | , , , , |
Format | Journal Article |
Language | Korean |
Published |
대한설비공학회
2015
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Subjects | |
Online Access | Get full text |
ISSN | 1229-6422 2465-7611 |
DOI | 10.6110/KJACR.2015.27.8.426 |
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Abstract | The advantages of a printed circuit heat exchanger (PCHE) are the compactness and efficiency derived from its heat-transfer characteristics; furthermore, a PCHE for which a diffusion bonding method was used during production can be applied to extreme environments such as a cryogenic condition. In this study, a micro-channel PCHE fabricated by diffusion bonding was investigated in a cryogenic environment regarding its thermal performance and the pressure drop. The test rig consists of an LN2 storage tank, vaporizers, heaters, and a cold box, whereby the vaporized cryogenic nitrogen flows in hot and cold streams. The overall heat-transfer coefficients were evaluated and compared with traditional correlations. Lastly, we suggested the modified heat-transfer correlations for a PCHE in a cryogenic condition. |
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AbstractList | The advantages of a printed circuit heat exchanger (PCHE) are the compactness and efficiency derived from its heat-transfer characteristics; furthermore, a PCHE for which a diffusion bonding method was used during production can be applied to extreme environments such as a cryogenic condition. In this study, a micro-channel PCHE fabricated by diffusion bonding was investigated in a cryogenic environment regarding its thermal performance and the pressure drop. The test rig consists of an LN2 storage tank, vaporizers, heaters, and a cold box, whereby the vaporized cryogenic nitrogen flows in hot and cold streams. The overall heat-transfer coefficients were evaluated and compared with traditional correlations. Lastly, we suggested the modified heat-transfer correlations for a PCHE in a cryogenic condition. KCI Citation Count: 2 The advantages of a printed circuit heat exchanger (PCHE) are the compactness and efficiency derived from its heat-transfer characteristics; furthermore, a PCHE for which a diffusion bonding method was used during production can be applied to extreme environments such as a cryogenic condition. In this study, a micro-channel PCHE fabricated by diffusion bonding was investigated in a cryogenic environment regarding its thermal performance and the pressure drop. The test rig consists of an LN2 storage tank, vaporizers, heaters, and a cold box, whereby the vaporized cryogenic nitrogen flows in hot and cold streams. The overall heat-transfer coefficients were evaluated and compared with traditional correlations. Lastly, we suggested the modified heat-transfer correlations for a PCHE in a cryogenic condition. |
Author | 최준석(Jun Seok Choi) 김동호(Dong Ho Kim) 김영(Young Kim) 나상준(Sang Jun Na) 윤석호(Seok Ho Yoon) |
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DocumentTitleAlternate | Experimental Study on the Thermal Performance of a Printed Circuit Heat Exchanger in a Cryogenic Environment |
DocumentTitle_FL | Experimental Study on the Thermal Performance of a Printed Circuit Heat Exchanger in a Cryogenic Environment |
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Keywords | Heat transfer correlation(열전달 상관식) Printed circuit heat exchanger(인쇄기판형 열교환기) Cryogenic heat exchanger(극저온 열교환기) |
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Title | 극저온 환경의 인쇄기판형 열교환기 열적성능에 대한 실험적 연구 |
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