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Effect of an Additional, Parallel Capacitor on Pulsed Inductive Plasma Accelerator Performance

机译:附加的并联电容器对脉冲感应等离子体加速器性能的影响

摘要

A model of pulsed inductive plasma thrusters consisting of a set of coupled circuit equations and a one-dimensional momentum equation has been used to study the effects of adding a second, parallel capacitor into the system. The equations were nondimensionalized, permitting the recovery of several already-known scaling parameters and leading to the identification of a parameter that is unique to the particular topology studied. The current rise rate through the inductive acceleration coil was used as a proxy measurement of the effectiveness of inductive propellant ionization since higher rise rates produce stronger, potentially better ionizing electric fields at the coil face. Contour plots representing thruster performance (exhaust velocity and efficiency) and current rise rate in the coil were generated numerically as a function of the scaling parameters. The analysis reveals that when the value of the second capacitor is much less than the first capacitor, the performance of the two-capacitor system approaches that of the single-capacitor system. In addition, as the second capacitor is decreased in value the current rise rate can grow to be twice as great as the rise rate attained in the single capacitor case.
机译:由一组耦合电路方程和一维动量方程组成的脉冲感应等离子体推进器模型已用于研究在系统中添加第二个并联电容器的影响。这些方程是无量纲的,从而可以恢复几个已知的缩放参数,并可以确定对于所研究的特定拓扑唯一的参数。由于较高的上升速率会在线圈表面产生更强,可能更好的电离电场,因此通过感应加速线圈的电流上升速率将用作感应推进剂电离有效性的替代度量。根据比例缩放参数,以数字方式生成表示推进器性能(排气速度和效率)和线圈中电流上升率的等高线图。分析表明,当第二个电容器的值远小于第一个电容器的值时,双电容器系统的性能接近单电容器系统的性能。另外,随着第二电容器的值减小,电流上升率可以增长到单电容器情况下所达到的上升率的两倍。

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