[2] Tarzhanov V I,Telichko I V, Vil’danov V G, et al.Detonation of Propane-Air Mixtures Under Injection of Hot Detonation Products[J].Combustion, Explosion, and Shock Waves,6,2(3). [3] Lee J H S, Knystautas R, Freiman A.High Speed Turbulent Deflagrations and Transition to Detonation in H2/Air Mixtures[J].Combustion and Flame, 4,6(2):227-239. [4] Carnasciali F, Lee J H S,Knystautas R, et al.Turbulent Jet Initiation of Detonation[J].Combustion and Flame, 1,4(1-2):170-180. [5] Chao J, Lee J H S.The Propagation Mechanism of High Speed Turbulent Deflagrations[J].Shock Waves,3,2(4). [6] Ishii K, Kataoka H,Kojima T.Initiation and Propagation of Detonation Waves in Combustible High Speed Flows [J].Proceedings of the Combustion Institute, 9,2(2):2323-2330. [7] Choi J Y.Computational Fluid Dynamics Algorithms for Unsteady Shock-induced Combustion, PartⅠ:Validation[J].AIAA Journal, 0,8(7):1179-1187. [8] 刘世杰, 孙明波, 林志勇,等.钝头体激波诱导振荡燃烧现象的数值模拟[J].力学学报,2010,42(4). [9] 林志勇.高静温超声速预混气爆震起爆与发展过程机理研究[D].长沙:国防科学技术大学研究生院, 2008. [10] Jiro Kasahara, Takakage Aral, Akiko Matsuo,et al.Experimental Investigations of Steady-State Oblique Detonation Waves Generated around Hypersonic Projectiles[R].AIAA 2001-1800.
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