Detonation initiation developing from the Richtmyer-Meshkov instability

被引:6
作者
Teng, H. H. [1 ]
Jiang, Z. L. [1 ]
Hu, Z. M. [1 ]
机构
[1] Chinese Acad Sci, Inst Mech, LHD, Beijing 100080, Peoples R China
基金
中国国家自然科学基金;
关键词
hot spot; deflagration front acceleration; detonation initiation; Richtmyer-Meshkov instability;
D O I
10.1007/s10409-007-0085-2
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Detonation initiation resulting from the Richtmyer-Meshkov instability is investigated numerically in the configuration of the shock/spark-induced-deflagration interaction in a combustive gas mixture. Two-dimensional multi-species Navier-Stokes equations implemented with the detailed chemical reaction model are solved with the dispersion-controlled dissipative scheme. Numerical results show that the spark can create a blast wave and ignite deflagrations. Then, the deflagration waves are enhanced due to the Richtmyer-Meshkov instability, which provides detonation initiations with local environment conditions. By examining the deflagration fronts, two kinds of the initiation mechanisms are identified. One is referred to as the deflagration front acceleration with the help of the weak shock wave, occurring on the convex surfaces, and the other is the hot spot explosion deriving from the deflagration front focusing, occurring on the concave surfaces.
引用
收藏
页码:343 / 349
页数:7
相关论文
共 17 条
[1]   Experimental studies of shock-induced ignition and transition to detonation in ethylene and propane mixtures [J].
Brown, CJ ;
Thomas, GO .
COMBUSTION AND FLAME, 1999, 117 (04) :861-870
[2]   Experimental studies of ignition and transition to detonation induced by the reflection and diffraction of shock waves [J].
Brown, CJ ;
Thomas, GO .
SHOCK WAVES, 2000, 10 (01) :23-32
[3]  
BROWN PN, 1989, SIAM J SCI STAT COMP, V10, P1051
[4]   COLLISION OF A SHOCK-WAVE WITH OBSTACLES IN A COMBUSTIBLE MIXTURE [J].
CHAN, CK .
COMBUSTION AND FLAME, 1995, 100 (1-2) :341-348
[5]   Detonation and deflagration initiation at the focusing of shock waves in combustible gaseous mixture [J].
Gelfand, BE ;
Khomik, SV ;
Bartenev, AM ;
Medvedev, SP ;
Grönig, H ;
Olivier, H .
SHOCK WAVES, 2000, 10 (03) :197-204
[6]  
Jiang ZL, 2004, ACTA MECH SINICA-PRC, V20, P1
[7]  
KAPLAN CR, 1981, COMBUST SCI TECH, V80, P185
[8]  
Kee R.J., 1996, UC405 SAND NAT LAB
[9]   Numerical simulation of deflagration-to-detonation transition: The role of shock-flame interactions in turbulent flames [J].
Khokhlov, AM ;
Oran, ES ;
Thomas, GO .
COMBUSTION AND FLAME, 1999, 117 (1-2) :323-339
[10]   Numerical simulation of detonation initiation in a flame brush: The role of hot spots [J].
Khokhlov, AM ;
Oran, ES .
COMBUSTION AND FLAME, 1999, 119 (04) :400-416