Experimental investigation on underwater trajectory deviation of high-speed projectile with different nose shape
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The investigation on free-surface impact of projectiles has last for more than one hundred years due to its noticeable significance on improving defensive weapon technology. Laboratory-scaled water entry experiments for trajectory stability had been performed with four kinds of projectiles at a speed range of 20∼200 m/s. The nose shapes of the cylindrical projectiles were designed into flat, ogive, hemi-sphere and cone to make comparisons on the trajectory deviation when they were launched into water at a certain angle of 0∼20°. Two high-speed cameras positioned orthogonal to each other and normal to the water tank were employed to capture the entire process of projectiles’ penetration. From the experimental results, the consecutive images in two planes were presented to display the general process of the trajectory deviation. Compared with the effect of impact velocities and nose shape on trajectory deviation, it merited conclude that flat projectiles had a better trajectory stability, while ogival proje...
[1] Martin J. Schaffar,et al. Behavior of Supercavitating Projectiles Fired Horizontally in a Water Tank: Theory and Experiments - CFD Computations with the OTi-HULL Hydrocode , 2005 .
[2] Wei Zhang,et al. An investigation into horizontal water entry behaviors of projectiles with different nose shapes , 2012 .