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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Investigation into geometric effect in capillary discharge plasma generator using an improved ablation model
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Investigation into geometric effect in capillary discharge plasma generator using an improved ablation model

机译:利用改进的消融模型对毛细管放电等离子体发生器几何效应的研究

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The wall material and the electrode material together determine the composition of the capillary discharge plasma. In this paper, an improved ablation model considering polyethylene (PE) and copper ablation and deposition was developed. Generators with different geometric sizes were calculated and tested. The results show that the concentration distributions of copper and PE in the generator were the pair-wise opposite, and the aspect ratio (AR) had a threshold (AR = 8.67). The copper mass density distribution varied from uniform to inhomogeneous with the increase in AR, which was similar to that of its concentration distribution. The maximum copper mass density increased with the increase in AR, and the AR threshold was also 8.67. The relationship between the copper or PE ablated mass and capillary length or diameter approximately followed a power law, and the relationship between the copper or PE ablated mass and AR approximately followed a proportional law. The PE mass density distribution was not similar to that of its concentration for AR >= 8.67. The PE ablated mass increased with the increase in AR, and its variation was similar to that of the maximum PE mass density. When the AR(AR > 5.2) was large enough, the PE mass density distribution determined the total mass density distribution. Otherwise, the total mass density distribution was determined by the mass density distribution of PE and copper. Overall, the simulation results were in good agreement with the experiments. These can be used to select the size and material of the capillary in simulating high heat flux plasma or electrothermal chemical gun ignition.
机译:壁材料和电极材料一起确定毛细管排出等离子体的组成。在本文中,开发了考虑聚乙烯(PE)和铜消融和沉积的改进的消融模型。计算和测试具有不同几何尺寸的发电机。结果表明,发电机中铜和PE的浓度分布是相对的一对,纵横比(AR)具有阈值(Ar = 8.67)。铜质量密度分布因均匀而变化,随着AR的增加而异,这与其浓度分布类似。随着AR的增加,最大铜质量密度增加,AR阈值也为8.67。铜或PE烧蚀质量与毛细管长度或直径之间的关系大致遵循动力法,以及铜或PE烧蚀质量与AR之间的关系大致遵循比例法。 PE质量密度分布与其浓度与Ar> = 8.67的浓度类似。 PE烧蚀质量随着AR的增加而增加,其变化与最大PE质量密度的变化类似。当Ar(Ar> 5.2)足够大时,PE质量密度分布确定了总质量密度分布。否则,通过PE和铜的质量密度分布确定总质量密度分布。总体而言,仿真结果与实验一致。它们可用于选择模拟高热通量等离子体或电热化学枪点火时的毛细管的尺寸和材料。

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