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Study and modeling of propellant ablation in coaxial ablative pulsed plasma thrusters

机译:同轴消融脉冲等离子体推进器中推进剂消融的研究与建模

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The influence of the main design parameters on the ablated mass bit (the mass ablated from the propellant in each discharge) of a coaxial ablative pulsed plasma thruster is analyzed in this paper. The analysis results show that the main influencing factor of the ablated mass bit in coaxial ablative pulsed plasma thrusters is the ablation energy from the arc. When the ablation energy is given, the shape and size of the propellant surface mainly affect the distribution of the ablated mass but have less influence on the ablated mass bit. Based on the analysis, a simple model that can be used to estimate the ablated mass bit of the coaxial ablative pulsed plasma thruster is established. To evaluate and complete the new model, a coaxial ablative pulsed plasma thruster is operated and tested under 10 different working conditions. The experimental results show that the ratio of the ablated mass bit to the absolute value integrals of the product of the electrode voltage and discharge current is approximately 0.38-0.49 mu g/J. When the ratio is set to 0.44 mu g/J, the maximum and average errors of the new model are 15.7% and 7.6%, respectively, for ablated mass bits under these 10 working conditions. The concept of the ablation direction is proposed in this paper. The experimental and simulation results show that the ablation direction has a great influence on the propellant surface profile change in coaxial ablative pulsed plasma thrusters, which also affects their performance and reliability.
机译:本文分析了同轴烧蚀等离子体推进器的烧蚀质量位对烧蚀质量比特(在每个放电中的推进剂中的质量烧蚀的质量烧蚀的影响。分析结果表明,同轴消融脉冲脉冲推进器中烧蚀质量位的主要影响因子是来自弧的消融能量。当给出消融能量时,推进剂表面的形状和尺寸主要影响烧蚀肿块的分布,但对烧蚀质量塔的影响较小。基于分析,建立了一种简单的模型,其可以用于估计同轴烧蚀等离子体推进器的共同烧蚀等离子体推进器的烧蚀质量位。为了评估和完成新模型,在10个不同的工作条件下进行同轴烧蚀脉冲血浆推进器并测试。实验结果表明,电极电压和放电电流乘积的烧蚀质量比率与电极电压和放电电流的绝对值的比率约为0.38-0.49μg/ j。当该比率设定为0.44μg/ j时,在这10个工作条件下,新模型的最大和平均误差分别为烧蚀质量位为15.7%和7.6%。本文提出了消融方向的概念。实验性和仿真结果表明,消融方向对同轴烧蚀等离子体推进器的推进剂表面轮廓变化具有很大影响,这也影响了它们的性能和可靠性。

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