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Effects of launch tube shock dynamcis on initiation of ram accelerator operation

机译:发动管冲击动力学对RAM加速器操作启动的影响

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Normal operation of the University of Washington's ram accelerator involves the use of a perforated tube to vent gases from the light gas gun into an evacuated tank before the projectile enters the ram accelerator tubes. Because there is residual air in the launch tube and gases from the gun that blow by the obturator, a shock is generated and reflects between the movign projectile/obturator and the entrance diaphragm. The vent tube perforations relieve the resulting pressure rise, such that it does not become significant until after the projectile has passed the vent section. Experiments were performed to determine the feasibility of eliminating the venting process. It was found, as expected, that the pressure increase from the shock reflections was much higher for ventless operation than for vented operation and in some cases prvented initiation of the ram acceleration process. The effect of increasing residual launch tube pressure on the starting process of the ram accelerator wasalso ivnestigated. It was found that for initial gun launch tube pressures of 21 kPa or less, successful starting of the ram accelerator was possible at a fill pressure of 5.0 MPa.
机译:华盛顿州大学RAM加速器的正常运行涉及使用穿孔管,以在射弹进入RAM加速管之前将气体从轻型气枪排出到抽空的罐中。由于发射管中的剩余空气和来自螺栓的枪的气体,因此产生冲击并反射运动射弹/闭孔器和入口膜片之间。排气管穿孔缓解所产生的压力升高,使得在射弹通过通风口部分之前不会变得显着。进行实验以确定消除通风过程的可行性。正如预期的那样,它发现从休克反射的压力增加比没有用于通风操作的流动操作,并且在某些情况下普及启动RAM加速过程。剩余发射管压力对RAM加速器Wasalso的起始过程的影响。结果发现,对于21 kPa或更低的初始枪发射管压力,在5.0MPa的填充压力下,RAM促进剂的成功开始。

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