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Total pressure in thermionic orificed hollow cathodes: Controlling mechanisms and their relative importance

机译:热离子孔孔空心阴极的总压力:控制机制及其相对重要性

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摘要

A statistical analysis is conducted to identify which physically relevant non-dimensional parameters influence the total (neutral, ion, and electron) static pressure inside thermionic orificed hollow cathodes. It is critical to uncover and order the importance of the physical mechanisms that affect the pressure inside hollow cathodes because it influences the plasma attachment length, the electron temperature, and the sheath potential. These plasma parameters, in turn, affect the emitter lifetime. A principal component analysis of total pressure data obtained from the literature reveals that four non-dimensional variables can account for most of the variation in the total-to-magnetic pressure ratio over five orders of magnitude. The relevant variables are identified with a backward stepwise selection process and an exhaustive grid search and include, by order of importance: the gasdynamic-to-magnetic pressure ratio, the ratio of the mass flow rate to the discharge current, the orifice-to-insert diameter ratio, and the orifice Reynolds number. It is also shown, using various models and regression analyses, that empirical, Poiseuille, or isentropic flow models should not be used for predictive cathode design work. The data-driven study suggests that, while viscous effects may be important, the variation in those effects between cathodes is negligible compared to the effects of the modification of the gas constant due to the plasma, the transitional flow, the flux of heavy species on the orifice plate, and the Lorentz force.
机译:进行统计分析以确定哪些物理相关的非量纲参数会影响热离子孔孔空心阴极内的总静压(中性、离子和电子)。揭示和整理影响空心阴极内部压力的物理机制的重要性至关重要,因为它会影响等离子体附着长度、电子温度和护套电位。这些等离子体参数反过来又会影响发射极的寿命。对从文献中获得的总压力数据进行主成分分析表明,四个无量纲变量可以解释五个数量级的总压力比与磁压比的大部分变化。相关变量通过向后逐步选择过程和详尽的网格搜索进行识别,并按重要性排序包括:气体动力学与磁压力比、质量流量与放电电流之比、孔口与刀片直径比和孔口雷诺数。使用各种模型和回归分析还表明,经验、泊塞耶或等熵流动模型不应用于预测阴极设计工作。数据驱动的研究表明,虽然粘性效应可能很重要,但与等离子体、过渡流、孔板上重物质的通量和洛伦兹力引起的气体常数改变的影响相比,阴极之间这些效应的变化可以忽略不计。

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