Integrated study on the comprehensive magnetic-field configuration performance in the 150 kW superconducting magnetoplasmadynamic thruster

Jinxing Zheng(Chinese Academy of Sciences), Haiyang Liu(University of Science and Technology of China), Yuntao Song(Chinese Academy of Sciences), Chen Zhou, Yong Li, Ming Li(Chinese Academy of Sciences), Haibin Tang(Beihang University), Ge Wang, Yuntian Cong, Baojun Wang, Yibai Wang(Beihang University), Peng Wu(Beihang University), Timing Qu(Tsinghua University), Xiaoliang Zhu(Chinese Academy of Sciences), Lei Zhu(Chinese Academy of Sciences), Fei Liu(Chinese Academy of Sciences), Yuan Cheng(University of Science and Technology of China), Boqiang Zhao
Scientific Reports
October 19, 2021
Cited by 37Open Access
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Abstract

Higher magnetic fields are always favoured in the magnetoplasmadynamic thruster (MPDT) due to its superior control of the plasma profile and acceleration process. This paper introduces the world's first integrated study on the 150 kW level AF-MPDT equipped with a superconductive coil. A completely new way of using superconducting magnet technology to confine plasma with high energy and extremely high temperatures is proposed. Using the PIC method of microscopic particle simulation, the plasma magnetic nozzle effect and performance of the MPDT under different magnetic-field conditions were studied. The integrated experiment used demonstrated that, in conjunction with the superconducting coil, greater homogeneity and a stronger magnetic field not only caused more even cathode ablation and improved its lifespan but also improved the performance of the MPDT (maximum thrust was 4 N at 150 kW, 0.56 T). Maximum thrust efficiency reached 76.6% and the specific impulse reached 5714 s.


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