작동유체 및 사이클에 따른 해양온도차발전용 유기랭킨사이클의 성능분석

논문상세정보
' 작동유체 및 사이클에 따른 해양온도차발전용 유기랭킨사이클의 성능분석' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • ocean thermal energy conversion
  • organic rankine cycle
  • working fluid
  • 유기랭킨사이클
  • 작동 유체
  • 해양온도차발전
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
118 1

0.0%

' 작동유체 및 사이클에 따른 해양온도차발전용 유기랭킨사이클의 성능분석' 의 참고문헌

  • 해양 온도차발전 시스템의 열역학 사이클에 대한 연구
    김남진 한국태양에너지학회 논문집 26 (2) : 9 ~ 18 [2006]
  • 폐쇄형 해양온도차발전 사이클 효율 향상 방안
    이호생 한국마린엔지니어링학회지 35 (1) : 46 ~ 52 [2011]
  • 다양한 작동유체를 이용한 20 kW급 해양온도차 발전 사이클 성능 분석
    윤정인 한국마린엔지니어링학회지 37 (8) : 836 ~ 842 [2013]
  • Working fluids in non-steady flows for waste energy recovery systems
    V. Maizza Journal of the Applied Thermal Engineering 16 (7) : 570 ~ 590 [1996]
  • Thermodynamics
    Y. A. Cengel McGrawHill [2011]
  • Study of working fluid selection of organic Rankine cycle(ORC) for engine waste heat recovery
    E. Wang Journal of the Energy 36 (5) : 3406 ~ 3418 [2011]
  • Performance simulation of solar-boosted ocean thermal energy conversion plant
    N. Yamada Journal of the Renewable Energy 34 (7) : 1752 ~ 1758 [2009]
  • Performance of a new refrigeration cycle using refrigerant mixture R32/R134a for residential air-conditioner applications
    J. Chen Journal of the Energy and Buildings 40 (11) : 2022 ~ 2027 [2008]
  • Performance analysis of organic Rankine cycle based on location of heat transfer pinch point in evaporator
    C. Guo Journal of the Applied Thermal Engineering 62 (1) : 176 ~ 186 [2014]
  • Performance analysis of double organic Rankine cycle for discontinuous low temperature waste heat recovery
    D. Wang Journal of the Applied Thermal Engineering 48 : 63 ~ 71 [2012]
  • Parametric performance analysis of OTEC system using HFC32/HFC134a mixtures
    H. Uehara Journal of the ASME Solar Engineering 2 : 1005 ~ 1010 [1995]
  • Optimization design and exergy analysis of organic Rankine cycle in ocean thermal energy conversion
    F. Sun Journal of the Applied Ocean Research 35 : 38 ~ 46 [2012]
  • Off-design performance analysis of a closed-cycle ocean thermal energy conversion system with solar thermal preheating and superheating
    H. Aydin Journal of the Renewable Energy 72 : 154 ~ 163 [2014]
  • Ocean thermal energy conversion primer
    L. A. Vega Journal of the Marine Technology Society 6 (4) : 25 ~ 35 [2003]
  • Low-grade heat conversion into power using organic Rankine cycles - A review of various applications
    B. F. Tchanche Journal of the Renewable and Sustainable Energy Reviews 15 (8) : 3963 ~ 3979 [2011]
  • Influence of coupled pinch point temperature difference and evaporation temperature on performance of organic Rankine cycle
    Y. R. Li Journal of the Energy 42 (1) : 503 ~ 509 [2012]
  • Heat resources and organic Rankine cycle machines
    B. F. Tchanche Journal of the Renewable and Sustainable Energy Reviews 39 : 1185 ~ 1199 [2014]
  • Fluid selection for a low- temperature solar organic Rankine cycle
    B. F. Tchanche Journal of the Applied Thermal Engineering 29 (11-12) : 2468 ~ 2476 [2009]
  • Feasibility study on the commercial plant of ccean thermal energy conversion (OTEC-K50)
    H. J. Kim Proceedings of the Twenty-second International Offshore and Polar Engineering Conference : 763 ~ 768 [2012]
  • Exergoeconomic comparison of TLC (trilateral Rankine cycle), ORC(organic Rankine cycle)and Kalina cycle using a low grade heat source
    M. Yari Journal of the Energy 83 : 712 ~ 722 [2015]
  • Design and testing of the organic Rankine cycle
    T. Yamamo Journal of the Energy 26 (3) : 239 ~ 251 [2001]
  • Analysis of optimization in an OTEC plant using organic Rankine cycle
    M. H. Yang Journal of the Renewable Energy 68 : 25 ~ 34 [2014]
  • A study of ocean thermal energy conversion systems using Kalina cycle and regenerative Rankine cycle
    S. H. Shin Journal of the Korean Solar Energy Society 19 (3) : 101 ~ 113 [1999]
  • A review of research on the Kalina cycle
    X. Zhang Journal of the Renewable and Sustainable Energy Reviews 16 (7) : 5309 ~ 5318 [2012]