[1] Natan B, Rahimi S. The Status of Gel Propellants in Year 2000[C]. Stresa: The 5th International Symposium on Special Topics in Chemical Propulsion: Combustion of Energetic Materials, 2000.
[2] Fakhri S, Lee J G, Yetter R. Atomization and Spray Characteristics of Gelled Propellant Simulates Formed by Two Impinging Jets[R]. AIAA2009-5241.
[3] 张蒙正, 杨伟东, 王 玫. 双股互击式喷嘴凝胶水雾化特性试验[J]. 推进技术, 2008, 29(1): 22-24.
[4] Chernov V, Natan B. Experimental Characterization of a Pulsatile Injection Gel Spray[R]. AIAA2005-4479.
[5] Rodrigues N S, Sojka P E. A Parametric Investigation of Gelled Propellant Spray Characteristics Utilizing Impinging Jet Geometry[R]. AIAA2014-1184.
[6] Dennis J, Fineman C, Yoon C, et al. Characterization of Gelling Systems for Development of Hypergolic Gels[C]. Saint Peterburg:European Conference for Aerospace Sciences, 2011.
[7] Dennis J , Pourpoint T, Son S. Ignition of Gelled Monomethylhydrazine and Red Fuming Nitric Acid in an Impinging Jet Apparatus[C]. San Diego: The 47th AIAA/ASME/SAE/ASEE Joint Propulsion Conference & Exhibit, 2013.
[8] Varma M, Jyoti B V S. Ignition and Combustion Studies of Heterogeneous UDMH-RFNA Gel Propellants[J]. International Journal of Energetic Materials & Chemical Propulsion, 2011, 10(2): 259-275.
[9] Kampen J, Alberio F, Ciezki H. Spray and Combustion Characteristics of Aluminized Gelled Fuels with an Impinging Jet Injector [J]. Aerospace Sciences and Technology, 2007, 11(1): 77-83.
[10] Padwal M B, Mishra D P. Experimental Characterization of Gelled Jet A1 Spray Flames[J]. Flow Turbulence & Combustion, 2016, 97(1): 295-337.
[11] Knab O, Preclik D, Estublier D. Flow Field Prediction Within Liquid Film Cooled Combustion Chambers of Storable Bi-Propellant Rocket Engines[R]. AIAA98-3370.
[12] Kumei X, Guobiao C, Yuntao Z. Flow Field Numerical Study Within Thrust Chamber of Aerospace Small Liquid Propellant Rocket Engine[C]. Valencia:The 57th International Astronautial Congress, 2006.
[13] Yuan T, Chen C, Huang B. Comparison of Hot-Fire and Cold-Flow Observations of Nitrogen Tetroxide/Monomethylhydrazine Impinging Combustion[J]. AIAA Journal, 2015, 47(10):2359-2367.
[14] Matsuura Y, Lihara S, Tashiro Y. Hypergolic Propellant Ignition Phenomenon with Oxidizer Two-Phase Flow Injection[J]. Journal of Propulsion & Power, 2014, 30(5):1399-1409.
[15] 庄逢辰. 液体火箭发动机喷雾燃烧的理论、模型与应用[M]. 长沙:国防科技大学出版社, 1995.