[5] Cler D L, Chevaugeon N, Shephard M S, et al. CFD application to gun muzzle blast a validation case study, 2003-1142[R].Nevada: AIAA, 2003.
[2]
[6] Florio L A. Effect of vent opening area and arrangement on gas flow field as gas propelled cylinder exits a flow tube[J]. Meccanica, 2009, 45(4): 475-501.
[3]
[7] Jiang X H, Chen Z H, Fan B C, et al. Numerical simulation of blast flow fields induced by a high-speed projectile[J]. Shock Waves, 2008, 18(3): 205-212.
[4]
[8] Gopalapillai R, Kim H D, Setoguchi T, et al. On the near-field aerodynamics of a projectile launched from a ballistic range[J]. Journal of Mechanical Science and Technology, 2007, 21(7): 1129-1138.
[2] Biss M M, Settles G S, Hargather M J, et al. High-speed digital shadowgraphy of shock waves from explosions and gunshots[J]. Shock Waves, 2009,(2): 91-96.
[7]
[3] Mizukaki T. Visualization of developing high temperature supersonic impulse jet induced by blast wave simulator[J]. Journal of
[8]
[4] Klingenberg G,Heimerl J M,Richard S A. Gun muzzle blast and flash[M]. Washington:American Institute of Aeronautics and Astronautics, 1992.
[11] Jonghoon B, Minwoo K, Soogab L. A numerical study on the generation of impulsive noise by complex flows discharging from a muzzle[J]. International Journal for Numerical Methods in Engineering, 2008, 75(8): 964-991.