Criticality for stabilized oblique detonation waves around spherical bodies in acetylene/oxygen/krypton mixtures

被引:47
作者
Kasahara, J
Arai, T
Chiba, S
Takazawa, K
Tanahashi, Y
Matsuo, A
机构
[1] Muroran Inst Technol, Dept Mech & Syst Engn, Muroran, Hokkaido 0508585, Japan
[2] Keio Univ, Dept Mech Engn, Kohoku Ku, Yokohama, Kanagawa 2238522, Japan
关键词
Lighting - Mixtures - Fluid dynamics - Velocity - Detonation - Shock waves - Acetylene;
D O I
10.1016/S1540-7489(02)80344-3
中图分类号
O414.1 [热力学];
学科分类号
摘要
We have experimentally studied self-sustained oblique detonation waves around projectiles as part of a fundamental investigation of the application of an oblique detonation wave engine and a high-efficiency detonation wave combustor as a power generator. In previous papers we used optical observation to clarify the fluid-dynamic structure of self-sustained oblique detonations stabilized around cone-nosed projectiles. In this study we investigated the criticality for detonation waves. The first expression of the criticality was a mean-curvature coefficient, a rate between a detonation cell width and a mean-curvature radius in which the normal velocity component was the Chapman-Jouguet (C-J) velocit)4 of 5.03. The mean-curvature coefficient was constant and did not depend on the type of fuel mixture (H-2/O-2/Ar or C2H2/O-2/Ar), initial mixture pressure, projectile diameter, projectile velocity, or diluent mole fraction. We obtained a more accurate mean-curvature coefficient for stabilized oblique detonation around symmetric spherical bodies in highly krypton-diluted acetylene/oxygen mixtures that have extremely low C-J velocities. The mean-curvature coefficient of 7.8 was determined to be the most important value for stabilizing the self-sustained oblique detonation waves around multidimensional bodies. Based on experimental results obtained at high- and low-projectile-velocity ranges, it may be concluded that a lower-velocity projectile can stabilize a self-sustained oblique detonation wave more effectively than can a higher-velocity one. In the high-projectile-velocity region, the experimental critical condition is inconsistent with Lee's detonation initiation theory. We propose a semiempirical criticality equation for the stabilization, which was the secondary expression of the criticality and identical with present and past experimental results.
引用
收藏
页码:2817 / 2824
页数:8
相关论文
共 16 条
[1]   Oblique detonation wave engine performance prediction [J].
Ashford, SA ;
Emanuel, G .
JOURNAL OF PROPULSION AND POWER, 1996, 12 (02) :322-327
[2]   SUPERSONIC H-2-AIR COMBUSTIONS BEHIND OBLIQUE SHOCK-WAVES [J].
DESBORDES, D ;
HAMADA, L ;
GUERRAUD, C .
SHOCK WAVES, 1995, 4 (06) :339-345
[3]  
Desbordes D., 1993, Progress in Astronautics and Aeronautics, V153, P347, DOI DOI 10.2514/5.9781600866265.0347.0359
[4]  
HIGGINS AJ, 973179 AIAA
[5]  
HIGGINS AJ, 1996, THESIS U WASHINGTON
[6]  
HIGGINS AJ, 960342 AIAA
[7]  
Kaneshige M., 1997, DETONATION DATABASE
[8]  
KANESHIGE MJ, 1996, P COMBUST INST, V26, P3015
[9]   Chapman-Jouguet oblique detonation structure around hypersonic projectiles [J].
Kasahara, J ;
Fujiwara, T ;
Endo, T ;
Arai, T .
AIAA JOURNAL, 2001, 39 (08) :1553-1561
[10]   Experimental study of interaction between oblique detonation wave and rarefaction wave around a hypersonic free projectile [J].
Kasahara, J ;
Endo, T ;
Nishide, K ;
Yahata, D ;
Fujiwara, T ;
Leblanc, JE .
JOURNAL DE PHYSIQUE IV, 2000, 10 (P11) :109-115