[1] 仲峰泉, 范学军,俞刚.带主动冷却的超声速燃烧室传热分析[J].推进技术, 9,0(5):513-517.(ZHONG Feng-quan, FAN Xue-jun, YU Gang.Heat Transfer Analysis for Actively Cooled Supersonic Combustor [J].Journal of Propulsion Technology, 9,0(5):513-517.)
[2] CHEN A Y, DANG L.Characterization of Supercritical JP-7′s Heat Transfer and Coking Properties [R].AIAA 2002-0005.
[3] Wishart D P, Fortin T, Guinan D, et al.Design Fabrication and Testing of an Actively Cooled Scramjet Propulsion System [R].AIAA 2003-0015.
[4] Huang H, Sobel D R, Spadaccini L J.Endothermic Heat-sink of Hydrocabon Fuels for Scramjet Cooling [R].AIAA 2002-3871.
[5] Stiegemeier B, Meyer M L, Taghavi R.A Thermal Stability and Heat Transfer Investigation of Five Hydrocarbon Fuels:JP-7, JP-8, JP-8+100, JP-10, and RP-1 [R].AIAA 2002-3873.
[6] Linne D L, Meyer M L, Edwards T, et al.Evaluation of Heat Transfer and Thermal Stability of Supercritical JP–7 Fuel [R].AIAA 97-3041.
[7] ZHONG F Q, FAN X J, YU G, et al.Heat Transfer of Aviation Kerosene at Supercritical Conditions [J].Journal of Thermophysics and Heat Transfer, 9,3(3):543-550.
[8] 李中洲, 朱惠人.超临界压力下航空煤油传热特性[J].推进技术, 1,2(2):261-265.(LI Zhong-zhou, ZHU Hui-ren.Heat Transfer Characteristics of Kerosene in Micro-Channel Under Supercritical Pressure [J].Journal of Propulsion Technology,1,2(2):261-265.)
[9] 江晨曦, 仲峰泉, 范学军, 等.超临界压力下航空煤油流动与传热特性实验[J].推进技术, 0,1(2):230-234.(JIANG Chen-xi, ZHONG Feng-qian, FAN Xue-jun,et al.Experiment on Convective Heat Transfer of Aviation Kerosene Under Supercritical Pressures [J].Journal of Propulsion Technology, 0,1(2):230-234.)
[10] 李勋锋, 仲峰泉, 范学军, 等.超临界压力下航空煤油圆管流动和传热的数值研究[J].推进技术, 0,1(4):467-472.(LI Xun-feng,ZHONG Feng-qian,FAN Xue-jun,et al.Numerical Study of Convective Heat Transfer of Aviation Kerosene Flows in Pipe at Supercritical Pressure [J].Journal of Propulsion Technology, 0,1(4):467-472.)
[11] Bergman T L, Lavine A S, Incropera F P, et al.Fundamentals of Heat and Mass Transfer[M].New York:John Wiley & Sons, Inc., 2011.
[12] Ward T A.Physical and Chemical Behavior of Flowing Endothermic Jet Fuels [D].Dayton, Ohio:Department of Mechanical and Aerospace Engineering University of Dayton, 2003.
[13] Volker Gnielinski.New equations for heat and mass transfer in the turbulent flow in pipes and channels [J].Engineering Research, 5,1(1):7-16.
|