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Study of advanced railgun hydrogen pellet injectors for fusion reactor refueling.

机译:用于聚变反应堆加油的先进轨道炮氢颗粒喷射器的研究。

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摘要

An advanced railgun system has been developed to assess its feasibility as a hypervelocity hydrogen pellet injector for magnetically confined plasmas. It consists of a pellet generator/gas gun assembly for freezing hydrogen pellets and injecting them into the railgun at velocities as high as 1.5 km/s. A plasma armature is formed by ionizing the low-Z propellant gas behind the pellet and firing the railgun. This fuseless operation prevents high-Z impurities from entering the reactor during pellet injection.;The railgun system has several features that distinguish it from its predecessors, including: (1) a more compact, versatile pellet generator, (2) a new gas gun configuration that produces significantly higher pellet speeds, (3) a perforated coupling piece between the gas gun and railgun to prevent spurious arcing, and (4) ablation-resistant sidewalls, perforated sidewalls and transaugmentation to reduce inertial and viscous drag, the primary obstacles to achieving hypervelocity.;A unique system of sophisticated controls and diagnostics has been assembled to operate the railgun system and assess its performance, including fully automated pellet freezing and gas gun operation, an automatic timing circuit that is immune to mistriggering caused by pellet fragmentation or electromagnetic interference, a streak camera, photostations, light gates, current trans formers, B-dot probes, laser interferometry and optical spectroscopy.;Free-arc and hydrogen pellet experiments were conducted to evaluate various railgun designs. Transaugmented and simple railguns 1.2 and 2 m long were tested. The performances of railguns using Mullite, solid Lexan and perforated Lexan sidewalls were compared. The railgun theory of operation and anticipated losses are also examined. The theoretical predictions are found to be in good agreement with the experimental results.;The advanced railgun system has set several world records for bare hydrogen pellet velocity, including a 3.3 km/s shot on the 2 m gun, thus demonstrating that railguns are viable candidates for high speed pellet injection.
机译:已经开发出一种先进的轨道炮系统,以评估其作为用于磁约束等离子体的超高速氢丸喷射器的可行性。它由一个颗粒发生器/气枪组件组成,用于冻结氢颗粒并将其以高达1.5 km / s的速度注入到喷枪中。等离子体衔铁是通过将小球后面的低Z推进剂气体电离并发射电磁炮而形成的。这种无熔丝操作可防止高Z杂质在丸粒注入过程中进入反应器。;轨道枪系统具有几个使其与前代产品不同的特征,包括:(1)更紧凑,用途更广的丸粒发生器;(2)新型气枪产生明显更高的药丸速度的配置;(3)气枪和轨道枪之间的带孔连接件可防止虚假电弧;(4)耐烧蚀侧壁,带孔侧壁和易变位以减少惯性和粘性阻力,这是阻碍其前进的主要障碍组装了一套独特的复杂控制和诊断系统,用于操作喷枪系统并评估其性能,包括全自动药丸冷冻和气枪操作,这是一种自动定时电路,可防止药丸碎裂或电磁引起的误装干涉,条纹相机,光电站,光闸,电流互感器,B点探针,激光输入进行了自由电弧和氢弹实验以评估各种轨道炮的设计。测试了1.2毫米和2 m长的增强型和简易式电磁炮。比较了使用莫来石(Mullite),实心Lexan和穿孔Lexan侧壁的电磁炮的性能。还研究了轨道炮的工作原理和预期损失。理论预测与实验结果非常吻合。先进的轨道炮系统已创下了裸露氢气球速度的多项世界纪录,其中包括在2 m炮上以3.3 km / s的速度射击,从而证明了轨道炮是可行的高速颗粒注射的候选。

著录项

  • 作者

    King, Tony Levone.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Electrical engineering.;Electromagnetics.;Plasma physics.;Energy.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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