Clavin P, Denet B. Diamond Patterns in the Cellular Front of an Overdriven Detonation [J]. Phys Rev Lett, 2002, 28(4): 044502.
[7]
Clavin P, He L, Williams F A. Multidimensional Stability Analysis of Overdriven Gaseous Detonations [J]. Phys Fluids, 1997, 9(12): 3764-3785.
[8]
Short M, Dold J W. Weak Detonations, Their Paths and Transition to Strong Detonation [J]. Combust Theory Model, 2002, 6(2): 279-296.
[9]
Li Y C. The Calculation of Strong Detonation Parameters [J]. Chinese Journal of Chemical Physics, 2003, 16(1): 25-29. (in Chinese)
[10]
李银成. 强爆轰参数的理论估算 [J]. 化学物理学报, 2003, 16(1): 25-29.
[11]
Qu Z M, Zhou X Q, Jia L, et al. The Study on Attenuation Characteristics and Parameter Analysis in Roadway during Gas Detonation [J]. Journal of Hunan University of Science & Technology (Natural Science Edition), 2006, 21(2): 1-4. (in Chinese)
Qu Z M, Zhou X Q, Wang Y, et al. Numerical Calculation and Analysis of the Detonation Parameters in Gaseous Phase during Gas Explosion [J]. Journal of Xi'an University of Science and Technology, 2006, 26(3): 321-324. (in Chinese)
Wang B L, Habermann M, Lenartz M, et al. Detonation Formation in H2-O2/He/Ar Mixtures at Elevated Initial Pressures [J]. Shock Waves, 2000, 10(4): 295-300.
[16]
Desbordes D, Lannoy A. Effects of a Negative Step of Fuel Concentration on Critical Diameter of Diffraction of a Detonation [A]//Kuhl A L, Leyer J C, Borisov A A. Dynamics of Detonations and Explosions: Detonations [M]. Washington D C: AIAA, 1991: 170-186.
[17]
Li J, Lai W H, Chung K, et al. Experimental Study on Transmission of an Overdriven Detonation Wave from Propane/Oxygen to Propane/Air [J]. Combust Flame, 2008, 154(3): 331-345.