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Early stage of the discharge in ablative pulsed plasma thrusters

机译:消融脉冲等离子体推进器中排出的早期阶段

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Currently the renewed interest in ablative pulsed plasma thrusters (APPTs) mostly results from the needs of satellites of the nano and micro sectors. However, the efficiency of APPTs significantly decreases when they are scaled down. A better understanding of the physical processes involved in plasma generation and maintenance in this type of thruster may help to minimize APPTs' performance degradation, when they are miniaturized. One of the issues, which up to now seems to be only marginally clarified, is an initial phase of discharge between the APPT's electrodes. In this paper a novel analytical model of a flashover development is proposed. In the model, movement of electrons between the PPT's electrodes is described relying on the concept of a saturated secondary electron avalanche. Two analytical approaches are considered. In the simplest approach, secondary electrons are assumed to be monoenergetic, whereas in the second, the Maxwellian distribution function is assumed. Simple, analytical formulas for surface current density, electron density and the thickness of the electron layer are derived. The predicted values are in a good agreement with measurements and computer simulations of other authors. The work was inspired by experimental examination of a micro APPT fed with polymeric nonvolatile propellant. For completeness, the thruster, known as an LμPPT (liquid micro pulsed plasma thruster), is described and its performance is presented.
机译:目前,在烧蚀脉冲等离子体推进器(APPTS)中的重新兴趣主要是由纳米和微扇区的卫星的需求产生的。然而,当缩减时,Appt的效率显着降低。在这种推进器中更好地理解涉及等离子体生成和维护中所涉及的物理过程可能有助于在小型化时最小化APPTS的性能下降。其中一个问题似乎似乎只是勉强澄清,是APPT电极之间放电的初始阶段。本文提出了一种新的闪络开发的分析模型。在该模型中,描述了PPT电极之间的电子的运动依赖于饱和二级电子雪崩的概念。考虑了两种分析方法。在最简单的方法中,假设二次电子被假定为单体终端,而在第二中,假设最大威尔分布函数。推导出用于表面电流密度,电子密度和电子层厚度的分析公式。预测值与其他作者的测量和计算机模拟有关。该作品的灵感来自于用聚合物非挥发性推进剂喂养的微量APPT的实验检查。为了完整性,描述了称为LμPPT(液体微脉冲血浆推进器)的推进器,并提出了其性能。

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