[1] IMMICH H, KRETSCHMER J, PRECLIK D. Thrust chamber technology developments for future launch vehicle liquid rocket engines: AIAA 2001-3544 [R]. Reston: AIAA, 2001.
[2] AUPOIX B, MIGNOSI A, VIALA S, et al. Experimental and numerical study of supersonic film cooling [J]. AIAA Journal, 2012, 36(6): 915-923.
[3] 朱森元.氢氧火箭发动机及其低温技术[M].北京:国防工业出版社,1993.
[4] ARNOLD R, SUSLOV D, HAIDN O J. Film cooling of accelerated flow in a subscale combustion chamber [J]. Journal of propulsion & power, 2015, 25(04): 443-451.
[5] ANDREWS G E, GUPTA M L, MKPADI M C. Full coverage discrete hole wall cooling: cooling effectiveness [J]. International journal of turbo & jet engines, 1984, 2(3): 199-212.
[6] O'CONNOR J P, HAJI-SHEIKH A. Numerical study of film cooling in supersonic flow [J]. AIAA Journal, 1991, 10(1): 2426-2433.
[7] 洪寅义,袁新.不同吹风比下平面叶栅气膜冷却数值模拟[C]// 中国工程热物理学会热机气动热力学学术会议.中国工程热物理学会, 2010:1117-1120.
[8] 白江涛,朱惠人,张宗卫,等.流量比对气膜冷却叶片表面换热系数的影响[J].西安交通大学学报, 2011,45(7):95-99.
[9] 任加万, 谭永华. 燃烧室缝槽气膜冷却方案研究[J]. 火箭推进, 2007, 33(6):28-33.
REN Jiawanl, TAN Yonghua. Investigation on the scheme of slot air film cooling combustion chamber [J]. Journal of rocket propulsion, 2007, 33(6): 28-33.
[10] MCBRIDE B J, GORDON S. Computer program for calculation of complex chemical equilibrium compositions and applications [J]. Unknown, 2011,19(4): 443-449.
[11] 蔡国飙.液体火箭发动机气气燃烧及气气喷注器技术[M].国防工业出版社,2012.
[12] 葛绍岩. 气膜冷却[M]. 北京:科学出版社, 1985.
[13] 张德良.计算流体力学教程[M].北京:高等教育出版社,2010.
[14] 赵坚行.燃烧的数值模拟[M].北京:科学出版社,2002.
[15] 康玉东,孙冰.燃气非平衡流再生冷却流动传热数值模拟[J].推进技术,2011,32(1):119-124.
[16] 方开泰,马长兴.正交与均匀试验设计[M].北京:科学出版社,2001.