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Effect of Inductive Coil Geometry on the Operating Characteristics of an Inductive Pulsed Plasma Thruster

机译:感应线圈几何形状对感应脉冲等离子推进器工作特性的影响

摘要

Operational characteristics of two separate inductive thrusters with conical theta pinch coils of different cone angles are explored through thrust stand measurements and time- integrated, unfiltered photography. Trends in impulse bit measurements indicate that, in the present experimental configuration, the thruster with the inductive coil possessing a smaller cone angle produced larger values of thrust, in apparent contradiction to results of a previous thruster acceleration model. Areas of greater light intensity in photographs of thruster operation are assumed to qualitatively represent locations of increased current density. Light intensity is generally greater in images of the thruster with the smaller cone angle when compared to those of the thruster with the larger half cone angle for the same operating conditions. The intensity generally decreases in both thrusters for decreasing mass flow rate and capacitor voltage. The location of brightest light intensity shifts upstream for decreasing mass flow rate of propellant and downstream for decreasing applied voltage. Recognizing that there typically exists an optimum ratio of applied electric field to gas pressure with respect to breakdown efficiency, this result may indicate that the optimum ratio was not achieved uniformly over the coil face, leading to non-uniform and incomplete current sheet formation in violation of the model assumption of immediate formation where all the injected propellant is contained in a magnetically-impermeable current sheet.
机译:通过推力架测量和时间积分,未经过滤的摄影,探索了两个具有不同锥角的圆锥形夹角线圈的感应式推进器的运行特性。脉冲钻头测量的趋势表明,在本实验配置中,带有感应线圈且锥角较小的推进器产生较大的推力值,这与先前的推进器加速度模型的结果明显矛盾。假定推进器运行照片中光强度较大的区域定性地表示电流密度增加的位置。与相同工作条件下具有较大半锥角的推进器的图像相比,在具有较小锥角的推进器的图像中,光强度通常更大。通常,两个推进器的强度都会降低,以降低质量流量和电容器电压。最亮光强度的位置向上游移动以降低推进剂的质量流量,向下游移动以降低施加的电压。认识到相对于击穿效率,通常存在施加的电场与气压的最佳比率,该结果可能表明,未在线圈表面上均匀地达到最佳比率,从而导致不均匀且不完整的电流板形成立即形成的模型假设的模型,其中所有注入的推进剂都包含在不透磁的电流层中。

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