[1]王俊峰, 王月基, 申麟, 等. 上面级多星部署的轨道设计研究[J]. 导弹与航天运载技术, 2011, 31(1): 7-9.
[2]刘国球. 液体火箭发动机原理[M]. 北京: 中国宇航出版社, 1993.
[3]朱宁昌. 液体火箭发动机设计[M]. 北京: 中国宇航出版社, 1993.
[4]杨世铭, 陶文铨. 传热学[M]. 3版. 北京: 高等教育出版社, 2002.
[5]WANG Ten-See, LIN Jeff, RUF Joe, et al. Effect of coolant flow distribution on transient side load of film cooled nozzles, AIAA 2011-3268 [R]. USA: AIAA, 2011.
[6]REIJASSE Philippe, BOCCALETTO Luca. Influence of film cooling on nozzle side load, AIAA 2008-392 [R]. USA: AIAA, 2008.
[7]REIJASSE Philippe, BOCCALETTO Luca. Nozzle flow control with a wall film injection, AIAA 2007-5747 [R]. USA: AIAA, 2007.
[8]REIJASSE Philippe, BOCCALETTO Luca. Nozzle flow separation with film cooling, AIAA 2008-4150 [R]. USA: AIAA, 2008.
[9]PERROT Y, HADJADJ A. Numerical simulation of shock boundary layer interaction in supersonic nozzles, AIAA 2005-4309 [R]. USA: AIAA, 2005.
[10]PERROT Y, HADJADJ A. Shock pattern in the plume of rocket nozzles needs for design consideration, AIAA 2005-4309 [R]. USA: AIAA, 2005.
[11]BOCCALETTO L, CAHUZAC F. Solving the flow separation issue a new nozzle concept, AIAA 2008-5234 [R]. USA: AIAA, 2008.
[12]WANG Ten-See, LIN Jeff, RUF Joe. Transient three-dimensional side-load analysis of out-of-round film-cooled nozzles [J]. Journal of Propulsion and Power, 2011, 27(4): 899-907.
[13]FERRANDON O, JAMES P H, GIRARD P H. Vulcain 2 nozzle extension integrated European team and advanced computational models to the service of nozzle design, AIAA 2005-4535 [R]. USA: AIAA, 2005.