항공기용 가스터빈의 고압 냉각터빈 노즐에 대한 복합열전달 해석

' 항공기용 가스터빈의 고압 냉각터빈 노즐에 대한 복합열전달 해석' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • 유체공학, 기력학, 진공학
  • cfd(전산 유체역학)
  • conjugateheattransfer(복합열전달)
  • cooledturbine(냉각터빈)
  • filmcooling(막냉각)
  • highpressureturbine(고압터빈)
  • jetimpingingcooling(분사충돌냉각)
  • thermal barrier coating(열차폐코팅)
  • turbine nozzle(터빈노즐)
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
736 0

0.0%

' 항공기용 가스터빈의 고압 냉각터빈 노즐에 대한 복합열전달 해석' 의 참고문헌

  • 항공기용 가스터빈 엔진의 고압터빈에서 열유동 특성해석을 위한전산해석기법 연구
    김진욱 한국유체기계학회 논문집 17 (3) : 46 ~ 51 [2014]
  • Thermal Conductivity and Elastic Modulus Evolution of Thermal Barrier Coatings Under High Heat Flux Conditions
    Zhu, D. NASA, TM-1999-209069 [1999]
  • High-Temperature Thermal Properties of Yttria Fully Stabilized Zirconia Ceramics
    Song, X. Journal of Rare Earth 29 (2) : 155 ~ 159 [2011]
  • Design of Gas Turbine Engine 1st stage High Pressure Turbine Nozzle Cooling System
    Seo., J. C. Proceedings of the KFMA Annual Meeting : 137 ~ 138 [2013]
  • Creep of CMSX-4 Superalloy Single Crystals: Effects of Rafting At High Temperature
    Reed., R. C. Acta Materialia 47 (12) : 3367 ~ 3381 [1999]
  • Coupled Heat Transfer Simulation of a Highpressure Turbine Nozzle Guide Vane
    Qiang, W. Chinese Journal of Aeronautics 22 : 230 ~ 236 [2009]
  • Conjugate Heat Transfer Analysis of a Film Cooled High-Pressure Turbine Vane under Realistic Combustor Exit Flow Conditions
    Insinna, M. ASME Turbo Expo : GT2014 ~ 25280 [2014]
  • Conjugate Heat Transfer Analysis in an Actural Gas Turbine Rotor Blade in Comparison with Pyrometer Data
    Tsukamoto, K. ASME Turbo Expo : GT2014 ~ 26962 [2014]
  • Conjugate Heat Transfer Analysis for Gas Turbine Cooled Blade
    Ho, K. S. ASME Turbo Expo : GT2014 ~ 25952 [2014]
  • Analytical and Experimental Evaluation of the Heat Transfer Distribution over the Surfaces of Turbine Vanes
    Hylton, L. D. AAS/Division of Dynamical Astronomy Meeting [1983]
  • Aerodynamic design of high pressure turbine for aircraft turbofan engine
    Kang, Y. S. Proceeding of the 7th National Congress on Fluids Engineering : 246 ~ 247 [2012]