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      Numerical simulation of the effects of trefoil tube support plates on the flow and heat transfer characteristics of a steam generator

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      https://www.riss.kr/link?id=O112874644

      • 저자
      • 발행기관
      • 학술지명
      • 권호사항
      • 발행연도

        2020년

      • 작성언어

        -

      • Print ISSN

        0363-907X

      • Online ISSN

        1099-114X

      • 등재정보

        SCIE;SCOPUS

      • 자료형태

        학술저널

      • 수록면

        7761-7777   [※수록면이 p5 이하이면, Review, Columns, Editor's Note, Abstract 등일 경우가 있습니다.]

      • 구독기관
        • 전북대학교 중앙도서관  
        • 성균관대학교 중앙학술정보관  
        • 부산대학교 중앙도서관  
        • 전남대학교 중앙도서관  
        • 제주대학교 중앙도서관  
        • 중앙대학교 서울캠퍼스 중앙도서관  
        • 인천대학교 학산도서관  
        • 숙명여자대학교 중앙도서관  
        • 서강대학교 로욜라중앙도서관  
        • 충남대학교 중앙도서관  
        • 한양대학교 백남학술정보관  
        • 이화여자대학교 중앙도서관  
        • 고려대학교 도서관  
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      부가정보

      다국어 초록 (Multilingual Abstract)

      A three‐dimensional coupled model of heat transfer tube and trefoil tube support plate (TSP) is developed based on a full‐size steam generator (SG). The CFX thermal phase change model is adopted to numerically investigate the flow and heat transfe...

      A three‐dimensional coupled model of heat transfer tube and trefoil tube support plate (TSP) is developed based on a full‐size steam generator (SG). The CFX thermal phase change model is adopted to numerically investigate the flow and heat transfer behaviors of the secondary side fluid. And the effects of trefoil TSPs and inlet subcooling on the thermal‐hydraulic characteristics of tube bundle are obtained. The calculation model reasonably reveals the distributions of the flow and heat transfer parameters in the SG, especially in trefoil TSP regions. Based on the across flow velocity and density of the secondary side fluid in U‐bend region, the most severe flow‐induced vibration damage is predicted at the angles of 110° on the hot leg and 60° on the cold leg, respectively. Due to the effects of trefoil TSPs, vortexes are induced, the outer wall temperature in the circumferential direction shows periodic characteristic in TSP regions, which increases the possibility of aggressive solutes deposition and U‐tubes rupture. In addition, inlet subcooling of the secondary side fluid has significant effects on the SG. As inlet subcooling decreases, the heat transfer is enhanced. The numerical simulation results obtained may provide guidance to facilitate the optimal design and in‐depth thermal‐hydraulic analysis of TSPs and SGs.
      A three‐dimensional coupled model of heat transfer tube and trefoil tube support plate (TSP) is developed for a steam generator. The effects of trefoil TSPs and inlet subcooling on the thermal‐hydraulic characteristics of tube bundle are obtained. Inlet subcooling of the secondary side fluid has significant effects, the heat transfer is enhanced as inlet subcooling decreases. The most severe flow‐induced vibration damage is predicted at the angles of 110° on the hot leg and 60° on the cold leg.

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