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Optimization Study of the Ames 0.5 Two-Stage Light Gas Gun

机译:Ames 0.5两段式轻气枪的优化研究

摘要

There is a need for more faithful simulation of space debris impacts on various space vehicles. Space debris impact velocities can range up to 14 km/sec and conventional two-stage light gas guns with moderately heavy saboted projectiles are limited to launch velocities of 7-8 km/sec. Any increases obtained in the launch velocities will result in more faithful simulations of debris impacts. It would also be valuable to reduce the maximum gun and projectile base pressures and the gun barrel erosion rate. In this paper, the results of a computational fluid dynamics (CFD) study designed to optimize the performance of the NASA Ames 0.5' gun by systematically varying seven gun operating parameters are reported. Particularly beneficial effects were predicted to occur if (1) the piston mass was decreased together with the powder mass and the hydrogen fill pressure and (2) the pump tube length was decreased. The optimum set of changes in gun operating conditions were predicted to produce an increase in muzzle velocity of 0.7-1.0 km/sec, simultaneously with a substantial decrease in gun erosion. Preliminary experimental data have validated the code predictions. Velocities of up to 8.2 km/sec with a 0.475 cm diameter saboted aluminum sphere have been obtained, along with large reductions in gun erosion rates.
机译:需要更加真实地模拟各种碎片对各种航天器的撞击。太空碎片的撞击速度可高达14 km / sec,传统的带有中度破坏性弹丸的两级轻型气枪的发射速度仅限于7-8 km / sec。发射速度的任何增加都会导致更真实地模拟碎片撞击。降低最大的火炮和弹丸基压力以及枪管的腐蚀速率也将是有价值的。在本文中,报告了旨在通过系统地改变七个喷枪工作参数来优化NASA Ames 0.5'喷枪性能的计算流体动力学(CFD)研究结果。如果(1)活塞质量与粉末质量和氢气填充压力一起降低,以及(2)泵管长度减小,则预计会产生特别的有益效果。据预测,在最佳的枪支操作条件变化下,枪口速度会提高0.7-1.0 km / sec,同时枪支侵蚀会大大减少。初步的实验数据已经验证了代码预测。直径为0.475厘米的破坏性铝球的速度最高可达8.2 km / sec,同时大大降低了喷枪的腐蚀速度。

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  • 作者

    Bogdanoff D. W.;

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  • 年度 1996
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