首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Two-dimensional, three-fluid modeling of capillary plasma discharges in electrothermal mass accelerators
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Two-dimensional, three-fluid modeling of capillary plasma discharges in electrothermal mass accelerators

机译:电热质加速器中毛细管等离子体放电的二维,三流体建模

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Electrothermal (ET) plasma launchers have a wide array of applications as mass acceleration devices. An ET plasma launcher utilizes an ET plasma discharge to accelerate a projectile. ET plasma discharges are arc-driven capillary discharges that ablate liner materials and form partially ionized plasmas. ET plasma discharges are generated by driving current pulses through a capillary source. Current pulses typically have peak currents on the order of tens of kA with pulse lengths on the order of hundreds of mu s. These types of plasma discharges have been explored for their application to military ballistics, electric thrusters, and nuclear fusion power. ET plasma discharges have been studied using 0D, 1D, and semi-2D fluid models. In this work, a three-fluid, fully two-dimensional model of ET plasma discharges is presented. First approximations used in the newly developed model and code are discussed and simulation results are compared with experiment. Simulation results indicate the development of back flow inside ET plasma discharges due to collisional drag forces between individual plasma species. This back flow is observed for simulations of ET plasma discharges receiving current pulses with peak currents of 10, 20, 30, and 40 kA. Simulation results also reveal the development of fluid perturbations near the breech of the plasma source. These perturbations cause variations in the plasma electrical conductivity and ultimately cause changes in the local ablation rate of the source liner. At higher current pulses, these perturbations are more localized in the region of the source closest to the breech. This effect causes a decrease in the ablated mass in this region relative to the region of the source experiencing the highest ablation.
机译:电热(ET)等离子发射器作为质量加速装置具有广泛的应用。 ET等离子发射器利用ET等离子放电来加速弹丸。 ET等离子体放电是电弧驱动的毛细管放电,可消融衬里材料并形成部分电离的等离子体。通过驱动电流脉冲通过毛细管源产生ET等离子体放电。电流脉冲通常具有数十kA量级的峰值电流,脉冲长度为数百μs的量级。已经研究了这些类型的等离子体放电在军事弹道,电动推进器和核聚变中的应用。已经使用0D,1D和半2D流体模型研究了ET等离子体放电。在这项工作中,提出了一种三流体,全二维的ET等离子体放电模型。讨论了新开发的模型和代码中使用的第一近似值,并将仿真结果与实验进行了比较。仿真结果表明,由于各个等离子体物质之间的碰撞阻力,ET等离子体放电内部的回流形成。在模拟ET等离子体放电,接收峰值电流为10、20、30和40 kA的电流脉冲时,可以观察到这种回流。仿真结果还揭示了等离子体源后膛附近的流体扰动的发展。这些扰动引起等离子体电导率的变化,并最终引起源衬层的局部烧蚀速率的变化。在较高的电流脉冲下,这些扰动更多地局限在最靠近后膛的电源区域。相对于源的经历最高烧蚀的区域,该效果导致该区域中烧蚀的质量减小。

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