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Friction factor and Nusselt number correlations for rectangular helical flow in stacks-in-conduit conductors

첫 페이지 보기
  • 발행기관
    한국초전도저온학회 (구 한국초전도저온공학회) 바로가기
  • 간행물
    한국초전도·저온논문지 (구 한국초전도저온공학회논문지) KCI 등재 SCOPUS 바로가기
  • 통권
    Vol.27 No.3 (2025.09)바로가기
  • 페이지
    pp.17-23
  • 저자
    Jin Young Lee, Sangjun Oh, Ho-Myung Chang
  • 언어
    한국어(KOR)
  • URL
    https://www.earticle.net/Article/A475350

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원문정보

초록

영어
Engineering correlations are derived to estimate the friction factor and Nusselt number of rectangular helical flow in stacks-inconduit conductors (SICC). The SICCs are under current development at KFE (Korea Institute of Fusion Energy) towards the realization of HTS (high-temperature superconductor) fusion system. A copper band is helically wound around the outer wall of a rectangular bundle of stacked REBCO (rare-earth barium copper oxide) tapes, and the space between the bundle and the external jacket serves as a cooling channel for helium gas flow. Key geometric parameters are identified for the SICC structure, and threedimensional numerical analyses are performed with ANSYS FLUENT and real thermo-physical properties of materials and fluids at 20-30 K. The analysis domain consists of (1) the REBCO bundle, (2) the copper band, and (3) the helium gas flow. A special attention is paid to the role of helix angle of copper band (and helium flow), significantly affecting not only the hydraulic diameter and flow length of cooling channel, but also the flow pattern of cooling gas established by the centrifugal force in curved flow passage. The thermo-hydraulic data are simplified with the typical method of dimensional analysis, and it is successfully verified that the dimensionless friction factor and Nusselt number can be expressed in terms of well-known Dean number (composed of inertial, centrifugal, and viscous forces), in a similar way with the helical tube flow. The derived correlations are directly applicable to the ongoing design and manufacturing of SICC, and eventually to the development of forced-flow gas-cooled HTS magnets.

목차

Abstract
1. INTRODUCTION
2. MODELING AND ANALYSIS
2.1. SICC 형상 모델
2.2. 유동 조건 및 상태량
2.3. 수치해석
3. RESULTS AND DISCUSSION
3.1. 마찰 계수 상관식
3.2. Nu 수 상관식
4. CONCLUSIONS
ACKNOWLEDGMENT
REFERENCES

키워드

friction factor Nusselt number helical flow stacks-in-conduit conductor engineering correlation

저자

  • Jin Young Lee [ Hong Ik University, Seoul, Korea ]
  • Sangjun Oh [ Korea Institute of Fusion Energy, Daejeon, Korea ]
  • Ho-Myung Chang [ Hong Ik University, Seoul, Korea ] Corresponding Author

참고문헌

자료제공 : 네이버학술정보

간행물 정보

발행기관

  • 발행기관명
    한국초전도저온학회 (구 한국초전도저온공학회) [The Korean Society of Superconductivity and Cryogenics (KSSC)]
  • 설립연도
    1998
  • 분야
    공학>전기공학
  • 소개
    21세기 핵심기술인 초전도공학과 저온공학분야의 기술 수준을 향상시키고, 선진 외국의 관련 학회와의 국제 교류 뿐만 아니라 이 분야에서 산.학.연의 학술활동 및 기술교류의 구심점으로의 그 역할을 성실히 수행하고자 한다.

간행물

  • 간행물명
    한국초전도·저온논문지 (구 한국초전도저온공학회논문지) [Progress in Superconductivity and Cryogenics]
  • 간기
    계간
  • pISSN
    1229-3008
  • eISSN
    2287-6251
  • 수록기간
    1999~2026
  • 등재여부
    KCI 등재,SCOPUS
  • 십진분류
    KDC 427 DDC 537

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