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Optimization of parameters of a copper plasma jet produced at the plasma focus device

机译:等离子体聚焦装置产生铜等离子体射流参数的优化

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The paper is aimed at optimization of parameters of a copper plasma jet produced at the DPF-1000U device, in which the inner electrode face was conically shaped. Preliminary information was obtained by numerical simulations of the plasma jet creation for different copper cones with the use of the two-dimensional magneto-hydrodynamic code KAROL. The simulations suggested that the cone height in the range of 4–7 cm should ensure a good plasma jet quality. The experimental data delivered by means of a 16-frame laser interferometer and a four-frame X-ray pinhole camera fully confirmed this conclusion. In the paper, we demonstrate the results for a 5 cm height cone. The eroded Cu plasma, swept up by the deuterium plasma sheath, was accelerated axially and compressed to very small diameter (3 mm) with an electron density of 7 × 1018 cm?3. The Cu plasma jet achieved a velocity of 5 × 107 cm/s and reached in the period of about 230 ns a distance (length) of 7 cm. The above results prove a successful adaptation of the plasma focus device to the metallic plasma jet generator.
机译:本文旨在优化在DPF-1000U器件上产生的铜等离子体射流的参数,其中内电极面是圆锥形的。通过使用二维磁力 - 流体动力学代码Karol来通过对不同铜锥体的等离子体喷射产生的数值模拟获得初步信息。模拟表明,4-7厘米范围内的锥形高度应确保良好的等离子体射流质量。通过16帧激光干涉仪和四帧X射线针孔摄像机提供的实验数据完全证实了这一结论。在本文中,我们证明了5厘米高度锥体的结果。由氘等离子体护套扫过的侵蚀的Cu等离子体,轴向加速并压缩到非常小的直径(3mm),其电子密度为7×1018cm≤3。 Cu等离子体射流达到5×107cm / s的速度,并且在约230ns的周期中达到7cm的距离(长度)。以上结果证明了等离子体聚焦装置的成功改编到金属等离子体喷射发生器。

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