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Diaphragm rupturing processes by a ram accelerator projectile

机译:冲压加速器射弹的膜片破裂过程

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Fluid dynamic processes of diaphragm rupturing by a conically-nosed projectile were experimentally studied. The experiments were conducted using a 25-mm-bore ram accelerator. The projectile was launched by a powder gun which was the pre-accelerator of the ram accelerator. Either air or nitrogen was used as the test gas. Through framing photography using a high-speed image converter camera, it was observed that in the processes of the diaphragm rupturing a radiating region developed between the diaphragm and the approaching sabot. Thsi region corresponded to the shock-heated gas which originated from a precursory shock wave driven by the accelerating projectile. With this precursory shock wave eliminated by a gasdynamic method, flow field around the projectile which was entering the test section by rupturing the diaphragm was visualized by holographic interferometer. During the rupturing, the system of oblique shock waves around the conical nose of the projectile was seen undisturbed on the fore side of the diaphragm. Under hte same condition, numerical simulation was conducted using a GRP (Generalized Riemann Problem) scheme which was extended for computign fluid dynamci problems with movign boundaries. Two extreme models were examined; one assumed that the diaphragm deformed in the same way as the projectile piercing the diaphragm. The other assumed that the diaphragm was rutpured instantly at the moment that the tip of the nose hit the diaphragm. Comparing these models with the experimentally visualized result, the former was concluded to better express the diaphragm rupturing process under the present sutudy.
机译:实验研究了圆锥形炮弹破坏隔膜的流体动力学过程。实验使用25毫米口径的夯头加速器进行。射弹是由粉末喷枪发射的,该粉末喷枪是ram加速器的预加速器。空气或氮气用作测试气体。通过使用高速图像转换器照相机进行成帧摄影,可以观察到在膜片破裂的过程中,在膜片和接近的木底之间形成了辐射区域。该区域对应于由加热的弹丸驱动的先驱冲击波产生的激波加热的气体。通过气体动力学方法消除了这种先兆冲击波,通过全息干涉仪观察了通过破裂隔膜进入试验区的射弹周围的流场。在破裂过程中,在隔膜的前侧未见扰动弹头圆锥形鼻子周围的倾斜冲击波系统。在相同条件下,使用GRP(广义Riemann问题)方案进行了数值模拟,该方案扩展为带有运动边界的计算流体动力学问题。研究了两个极端模型;一个人假设隔膜的变形与射弹穿透隔膜的方式相同。另一个人认为鼻尖碰到隔膜的那一刻,隔膜马上就发了疯。将这些模型与实验的可视化结果进行比较,得出结论,在目前的研究条件下,前者可以更好地表达隔膜破裂过程。

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