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首页> 外文期刊>IEEE Transactions on Magnetics >Acceleration of solid hydrogen pellet using augmented railgun for magnetic fusion reactor refueling
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Acceleration of solid hydrogen pellet using augmented railgun for magnetic fusion reactor refueling

机译:使用增强型轨道枪加速氢聚变反应堆为磁性聚变反应堆加油

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A 1.2 m long electromagnetic railgun with separate augmentation was designed, fabricated, and tested for the purpose of injecting hypervelocity hydrogen pellets into magnetic fusion devices for refueling. A compact configuration of two pairs of coaxial rails insulated by thin Kapton films was employed. Two pulse-forming networks were used to separately control the duration, amplitude, and overlap of the current pulses. Copper sulphate resistors were employed as impedance-matching resistors and bank short resistors. The magnetic field inside the gun bore boosted by the high current on the gun augmentation rails, which in turn increased the J/spl times/B force without increasing the armature current, resulting in less ablation of the gun bore and pellet. Higher acceleration was achieved due to reduced inertial and viscous drag. Using a 1.2 m augmented railgun, hydrogen pellet velocities in excess of 2.5 km/s were achieved. Hydrogen pellet accelerations as high as 4.4/spl times/10/sup 6/ m/s/sup 2/ were achieved at a railgun current of 13.5 kA while the acceleration obtained on a conventional railgun was 2.2/spl times/10/sup 6/ m/s/sup 2/ at 14.1 kA. Computer simulations have been performed using the finite element code MSC/EMES to analyze the current density, magnetic field, Lorentz force, and inductance gradient of the conventional and augmented railguns.
机译:设计,制造和测试了一个1.2 m长的电磁轨道炮,带有单独的增强装置,用于将超高速氢小球注入电磁聚变装置中进行加油。采用两对由薄Kapton薄膜绝缘的同轴导轨的紧凑配置。使用两个脉冲形成网络分别控制电流脉冲的持续时间,幅度和重叠。硫酸铜电阻器被用作阻抗匹配电阻器和排短路电阻器。喷枪增强导轨上的大电流增强了喷枪膛内的磁场,这又增加了J / spl次/ B力而又不增加电枢电流,从而减少了枪膛和弹丸的烧蚀。由于减少了惯性和粘性阻力,因此获得了更高的加速度。使用1.2 m增强型轨道炮,氢弹的速度超过2.5 km / s。在13.5 kA的喷枪电流下,氢气球的加速度高达4.4 / spl次/ 10 / sup 6 / m / s / sup 2 /,而传统的轨道炮所获得的加速度为2.2 / spl次/ 10 / sup 6 / m / s / sup 2 /在14.1 kA时。使用有限元代码MSC / EMES进行了计算机仿真,以分析常规和增强型轨道炮的电流密度,磁场,洛伦兹力和电感梯度。

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