[1] 秦飞, 吕翔, 刘佩进, 等. 火箭基组合推进研究现状与前景[J]. 推进技术, 2010, 31(6): 660-665. (QIN Fei, LV Xiang, LIU Pei-jin, et al. Research Status and Perspective of the Rocket Based Combined Cycle Propulsion System[J]. Journal of Propulsion Technology, 2010, 31(6): 661-665.)
[2] 黄生洪, 何洪庆, 何国强, 等. 火箭基组合循环(RBCC)推进系统概念设计模型[J]. 推进技术, 2003, 24(1): 1-5. (HUANG Sheng-hong, HE Hong-qing, HE Guo-qiang, et al. Conceptual Design Model of Rocket Base Combined Cycle Propulsion System[J]. Journal of Propulsion Technology, 2003, 24(1): 1-5.)
[3] Dalle D, Torrez S, Driscoll J. Performance Analysis of Variable-Geometry Scramjet Inlets Using a Low-Order Model[R]. AIAA 2011-5756.
[4] Jesse R C, Mark J L. An Aerodynamic Redesign of the SR-71 Inlet with Application to Turbine Based Combined Cycle Engines[R]. AIAA 2004-3481.
[5] DeBonis J R, Trefny C J, Steffen C J. Inlet Development for a Rocket Based Combined Cycle, Single Stage to Orbit Vehicle Using Computational Fluid Dynamics[R]. AIAA 99-2239.
[6] Laurent S, Fran?ois F. Development Study of the ATREX Engine for TSTO Spaceplane[R]. AIAA 2001-1839.
[7] Eggers T, Novell P, Haupt M. Design Studies of the JAPHAR Experimental Vehicle for Dual Mode Ramjet Demonstration[R]. AIAA 2001-1921.
[8] Falempin F, Serre L. PROMETHEE the French Military Hypersonic Propulsion Program[R]. AIAA 2003-6950.
[9] Francois F, Laurent S. French Flight Testing Program LEA Status in 2009[R]. AIAA 2011-2200.
[10] Mel B, Adam S. The Strutjet Engine: Exploding the Myths Surrounding High Speed Airbreathing Propulsion[R]. AIAA 95-2475.
[11] Robert F F. Integrated System Test of an Airbreathing Rocket (ISTAR) [R]. AIAA 2001-1812.
[12] Pitt D M, Dunne J P, White E V. Design and Test of a SMA Powered Adaptive Aircraft Inlet Internal Wall[R]. AIAA 2002-1356.
[13] 金志光, 张堃元. 宽马赫数范围高超声速进气道伸缩唇口式变几何方案[J]. 宇航学报, 2010, 31(5):1503-1511.
[14] 金志光, 张堃元. 宽马赫数范围高超声速进气道转动唇口变几何方案研究[J]. 航空动力学报, 2010, 25(7): 1553-1560.
[15] 刘晓伟. 火箭基组合循环(RBCC)动力宽适用性进气道研究[D]. 西安:西北工业大学, 2010.
[16] 石磊, 何国强, 秦飞, 等. 某RBCC样机进气道的设计与数值模拟[J]. 航空动力学报, 2011, 26(8):1801-1807.
[17] Herrmann C, Koschel W. Experimental Investigation of the Internal Compression Inside a Hypersonic Intake[R]. AIAA 2002-4130.
[18] Reinartz B U, Herrmann C D, Ballmann J, et al. Aerodynamic Performance Analysis of a Hypersonic Inlet Isolator Using Computation and Experiment[J]. Journal of Propulsion and Power, 2003, 19(5): 868-875.
[19] H?berle J, Gülhan A. Investigation of Two-Dimensional Scramjet Inlet Flowfield at Mach 7[J]. Journal of Propulsion and Power, 2008, 24(3).
[20] Hohn O, Gülhan A. Experimental Investigation on the Influence of Sidewall Compression on the Flowfield of a Scramjet Inlet at Mach 7[R]. AIAA 2011-2350.
[21] William H H, David T P. Hypersonic Airbreathing Propulsion[M]. Washington, DC: American Institute of Aeronautics and Astronautics, 1994.
[22] 贾地, 范晓樯, 冯定华, 等. 高超声速侧压式进气道溢流特性研究[J]. 航空动力学报, 2007, 22(1): 85-89.
[23] 徐惊雷, 张堃元. 唇口对侧压式高超声速进气道及等直隔离段影响的数值分析[J]. 航空动力学报, 2004, 19(6): 806-810.
[24] Shi L, Liu X, He G, et al. Numerical Analysis of Flow Features and Operation Characteristics of a Rocket-Based Combined-Cycle Inlet in Ejector Mode[J]. Acta Astronautica, 2016, 127: 182-196.
[25] Soltani M R, Daliri A, Younsi J S, et al. Effects of Bleed Position on the Stability of a Supersonic Inlet[J]. Journal of Propulsion and Power, 2016, 32(5): 1-14.(编辑:张荣莉) * 收稿日期:2017-04-26;修订日期:2017-05-27。作者简介:张正泽,男,博士生,研究领域为航空宇航推进理论与工程。E-mail: zhangzhengze@mail.nwpu.edu.cn
|