AK-47步枪70.82毫米子弹接近近墙的计算空气动力学

Tanmay B. Gholap, Ruturaj V. Salokhe, Ganesh V. Ghadage, Shankar V. Mane, D. Bajaj, D. Sahoo
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引用次数: 1

摘要

采用计算流体力学方法研究了AK-47突击步枪在2马赫速度下©7.82毫米子弹靠近近壁时的流动。根据已有的计算数据对计算方法进行了验证。在城域作战中,炮弹是在离地面很近的地方发射的。地面的存在使子弹表面的压力分布不对称。特别考虑了冲击波撞击壁面后的反射。从最早的阶段到镜头周围的影响;撞击的程度取决于离地间隙。描述了通过计算迭代获得的弹体流线和相关的表面压力分布。研究了高径比为0.5和1的间隙,以考察升力、阻力和力矩等气动系数的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computational Aerodynamics of an AK-47 Rifle's 70.82 mm Bullet in Proximity to a Near Wall
Computational Fluid Dynamics was used to study the flow around an AK-47 Assault Rifle© 7.82-mm bullet in proximity to a near wall at Mach 2. The computational methodology was validated against the previously existing computational data. In metropolitan battles situations, the projectiles are fired in close proximity to the ground. The presence of ground prompts an asymmetric pressure distribution over the surface of the bullet. The reflection of shock waves after hitting the wall is considered particularly. From the earliest stage to the influence around the shot; the level of impact is subjected to the ground clearance. Streamlines across the projectile and related surface pressure distribution acquired from computational iterations are described. Clearances with 0.5 and 1 height/diameter ratio were studied to examine the transitions in aerodynamic coefficients like lift, drag, and moment.
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