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Scaling Design and Experimental Study on Hall Thrusters with Curved Magnetic Field

机译:弯曲磁场霍尔推力器的定标设计与实验研究

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摘要

The existing scaling theories of Hall thrusters are based on the hypothesis of a one-dimensional straight magnetic field, which is not suitable for the design of modern thrusters with a two-dimensional curved magnetic field. In this paper, using the equation analysis method, we derive new similarity criterions in a curved magnetic field by analyzing the momentum equations of charged particles; consequently, we propose a new modeling design method for Hall thrusters with a constant discharge voltage. This method is further validated by experiments. A designed model with a power of 1.5 kW is made based on our proposed method from a prototype model with a power of 1 kW. The experimental results demonstrate that these two thrusters have little differences in performance and physical processes as expected from the scaling. Therefore, our method is well suited for designing a Hall thruster with a curved magnetic field (© 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)
机译:霍尔推力器的现有缩放理论基于一维直磁场的假设,该假设不适用于具有二维弯曲磁场的现代推力器的设计。本文采用方程分析方法,通过分析带电粒子的动量方程,推导了弯曲磁场中的新相似性准则。因此,我们提出了一种具有恒定放电电压的霍尔推力器的新型建模设计方法。实验进一步验证了该方法。根据我们提出的方法,从功率为1 kW的原型模型中,设计出功率为1.5 kW的模型。实验结果表明,这两种推进器在性能和物理过程方面几乎没有缩放所期望的差异。因此,我们的方法非常适合设计具有弯曲磁场的霍尔推力器(©2011 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim)

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