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Development of advanced compact railguns for injection of hypervelocity hydrogen pellets into magnetic fusion plasmas

机译:先进的紧凑型电磁炮的研制,用于将超高速氢丸注入磁聚变等离子体中

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We have designed, fabricated, and tested a number of compact railguns utilizing a variety of gun geometries, augmentation schemes, and state-of-the-art rail and insulator materials in order to develop an injector that can accelerate pellets of hydrogen isotopes to very high velocities (/spl sim/10 km/s) continuously and at high repetition rates for refueling magnetically confined fusion plasmas. These advanced guns are designed to achieve two goals: to minimize or eliminate gunwall erosion and to produce the maximum possible pellet acceleration. These closely related goals assure long gun lifetimes. Using an advanced transaugmented compact gun with an acceleration length of only 45-cm, we have recently achieved hydrogen pellet velocities as high as 2.2 km/s with a time-averaged pellet acceleration of 4.7/spl times/10/sup 6/ m/s/sup 2/ at a modest rail current of 10 kA. This paper includes a brief overview of our railgun control and diagnostic systems and discusses recent results of our railgun experiments using both plexiglass and cryogenic hydrogen pellets.
机译:我们设计,制造和测试了许多紧凑型轨道枪,它们利用各种枪几何形状,扩展方案以及最新的轨道和绝缘体材料,以开发出能够将氢同位素颗粒加速到非常快的喷射器。以高重复频率连续不断地以高速度(/ spl sim / 10 km / s)补充磁性受限的聚变等离子体。这些先进的喷枪旨在实现两个目标:最小化或消除枪壁腐蚀,并产生最大可能的弹丸加速度。这些密切相关的目标可确保较长的喷枪寿命。使用先进的增强型紧凑型小炮,加速长度仅为45厘米,我们最近实现了氢颗粒速度高达2.2 km / s,时间平均颗粒加速度为4.7 / spl乘以10 / sup 6 / m / s / sup 2 /在10 kA的适中轨电流下。本文简要介绍了我们的喷枪控制和诊断系统,并讨论了使用有机玻璃和低温氢气颗粒的喷枪实验的最新结果。

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