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霍尔推力器中呼吸振荡激发机理及影响因素
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作者 杨三祥 郭宁 +5 位作者 贾艳辉 耿海 高俊 刘家涛 刘士永 杨盛林 《物理学报》 SCIE EI CAS CSCD 北大核心 2023年第8期229-240,共12页
呼吸振荡作为霍尔推力器中的一种低频、大振幅放电不稳定性,对推力器的性能及寿命有严重的影响.本文利用包含了离子径向扩散和电子壁面相互作用的双区“捕食者-被捕食者”(Predator-Prey,P-P)模型,对霍尔推力器中呼吸振荡的激发机理和... 呼吸振荡作为霍尔推力器中的一种低频、大振幅放电不稳定性,对推力器的性能及寿命有严重的影响.本文利用包含了离子径向扩散和电子壁面相互作用的双区“捕食者-被捕食者”(Predator-Prey,P-P)模型,对霍尔推力器中呼吸振荡的激发机理和影响因素开展了研究.研究结果表明,电子与壁面之间相互作用导致的能量耗散对呼吸振荡有抑制作用,而近阳极区的离子径向扩散对呼吸振荡有激发作用.依赖于近阳极区的离子径向扩散强度,模式振荡频率以及放电电流的振荡峰值呈现非单调变化的趋势.此外,在推力器放电通道长度一定的情况下,呼吸振荡的激发与电离区长度的变化无关,而振荡的频率(周期)随着电离区长度的增大而增大(减小).本文的研究结果将为霍尔推力器中呼吸振荡激发机理的认识以及呼吸振荡抑制新方法的提出提供理论支撑. 展开更多
关键词 霍尔推力器 呼吸振荡 双区P-P 模型 离子径向扩散 电子壁面相互作用
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Numerical study on the electron-wall interaction in a Hall thruster with segmented electrodes placed at the channel exit
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作者 卿绍伟 鄂鹏 +1 位作者 段萍 徐殿国 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第8期523-528,共6页
Electron-wall interaction is always recognized as an important physical problem because of its remarkable influences on thruster discharge and performance. Based on existing theories, an electrode is predicted to weak... Electron-wall interaction is always recognized as an important physical problem because of its remarkable influences on thruster discharge and performance. Based on existing theories, an electrode is predicted to weaken electron-wall interaction due to its low secondary electron emission characteristic. In this paper, the electron-wall interaction in an Aton-type Hall thruster with low-emissive electrodes placed near the exit of discharge channel is studied by a fully kinetic particle-in cell method. The results show that the electron-wall interaction in the region of segmented electrode is indeed weakened, but it is significantly enhanced in the remaining region of discharge channel. It is mainly caused by electrode conductive property which makes equipotential lines convex toward channel exit and even parallel to wall surface in near-wall re- gion; this convex equipotential configuration results in significant physical effects such as repelling electrons, which causes the electrons to move toward the channel center, and the electrons emitted from electrodes to be remarkably accelerated, thereby increasing electron temperature in the discharge channel, etc. Furthermore, the results also indicate that the discharge current in the segmented electrode case is larger than in the non-segmented electrode case, which is qualitatively in accordance with previous experimental results. 展开更多
关键词 Hall thruster electron-wall interaction segmented electrodes particle simulation
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