[1]RUF J H, MCCONNAUGHEY P K. The plume physics behind aerospike nozzle altitude compensation and slipstream effect, AIAA 97-3218[R]. USA: AIAA,1997.
[2]SILVER R. Final report: advanced aerodynamic spike configurations: volume 1, analytical and cold flow studies, AFRPL-TR-67-246-Vol I[R]. USA: Rocketdyne Division, Rockwell International Corporation, 1967.
[3]SILVER R. Final report, advanced aerodynamic spike configurations: volume 2, hot fire investigation: basic, slipstream and liquid TVC, AFRPL-TR-67-246-Vol II [R]. USA: Rocketdyne Division, Rockwell International Corporation, 1967.
[4]NASUTI F, ONOFRI M. Analysis of in-flight behavior of truncated plug nozzles, AIAA 2000-3289[R]. USA: AIAA, 2000.
[5]NASUTI F, ONOFRI M. A numerical study of wake behavior in plug nozzles, AIAA 2001-1894[R]. USA: AIAA, 2001.
[6]ACIORRI R, ASUTI F, ABETTA F. Evaluation of turbulence modeling in supersonic afterbody comput- ations, AIAA 2001-3039[R]. USA: AIAA 2001.
[7]HAGEMANN G, IMMICH H, TERHARDT M. Flow phenomena in advanced rocket nozzles - the plug nozzle, AIAA 98-3522[R]. USA: AIAA, 1998.
[8]刘君, 郭正. 超音速外流与塞式喷管形成的干扰流场数值模拟[J]. 国防科技大学学报, 2000, 22(5): 15-18.
[9]李江, 郭唐稳, 马家欢. 外流干扰对气动塞式喷管性能影响的数值模拟研究[J]. 宇航学报, 2001, 22(2): 32-38.
[10]戴梧叶, 刘宇, 张正科, 等. 外流对塞式喷管性能的影响[J]. 空气动力学学报, 2002, 20(1): 32-38.
[11]王长辉, 刘宇. 外流对塞式喷管流场和性能的影响[J]. 北京航空航天大学学报, 2006, 32(2): 130-134.
[12]王长辉, 刘宇, 覃粒子. 塞式喷管设计和性能验证[J]. 空气动力学报, 2008, 26(2): 139-144.
[13]覃粒子, 刘宇, 王一白. 线性塞式喷管型面快速设计方法[J]. 推进技术, 2004, 25(2): 144-147.
[14]PRABHU D K, LOOMIS M P, VENKATAPATHY E, et al. X-33 aerothermal environment simulations and aero- thermodynamic design, AIAA 98-868-111[R]. USA: AIAA, 1998.
[15]李军伟, 刘宇, 王长辉. 塞锥侧板对直排塞式喷管性能的影响[J]. 推进技术, 2004, 25(3): 252-258.