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Influence of head structure on hydrodynamic characteristics of transonic motion projectiles

机译:头部结构对跨动作射弹流体动力学特性的影响

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The hydrodynamic characteristic of transonic motion projectiles with different head diameters are investigated by numerical simulation. Compressibility effect in liquid-phase water are modeled using the Tait state equation. The result shows that with increasing of velocity the compression waves transfer to shock waves,which cause the significant increasing of pressure and decreasing the dimensions of supercavities. While the increasing of head diameter, the thickness, the vapor volume fraction and the drag coefficient of supercavities are all enhanced, which is conducive to the stability of transonic-speed projectiles. The cavity dynamics of the different head projectiles are compared, and the results shows when Mach number is in high region, the truncated cone head projectile is enveloped by a cavity which results in less drag and better stability.
机译:用数值模拟研究了不同头部直径的跨音速运动射弹的流体动力学特性。使用Tait状态方程建模液相水中的可压缩性效果。结果表明,随着速度的增加,压缩波转移到冲击波,这导致压力的显着增加并降低超级挤压性的尺寸。虽然头径的增加,厚度,蒸汽体积分数和超级挤压性的拖曳系数都是增强的,但是有利于跨音速射弹的稳定性。比较不同头部射弹的腔动力学,结果示出了当马赫数在高区域中时,截头锥形射头射弹被腔包围,导致较少的阻力和更好的稳定性。

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