首页> 外文会议>AIAA/SAE/ASEE joint propulsion conference;AIAA propulsion and energy forum >Effect of Density Inhomogeneity in Azimuth on Discharge Oscillation Suppression and Electron Diffusion in Hall Thrusters
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Effect of Density Inhomogeneity in Azimuth on Discharge Oscillation Suppression and Electron Diffusion in Hall Thrusters

机译:方位角密度不均匀性对霍尔推进器放电振荡抑制和电子扩散的影响

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Azimuthal non-uniform propellant supply operation shows representative characteristics of suppressed discharge oscillation and increased axial electron current. These characteristics implicate that, with non-uniform operation, physics underlying oscillation and electron trans-port in Hall thrusters may be able to be studied in a spatiotemporally less strict experimental setup. From this insight, we investigated azimuthal plasma properties of non-uniform propellant operation and its influences on discharge oscillation and electron cross-field transport. The image analysis result reveals non-linear plasma structures elongated in direction of electron azimuthal E × B drift, showing the structure is governed by electrons. From probe measurements, inhomogeneous electron temperature distribution in azimuth direction is observed, and corresponding azimuthal inharmonic ionization is thought to partially contributes to the suppressed discharge oscillation. Also, macroscopic zeroth order azimuthal distribution of plasma potential and electron density shows the distribution is self-consistently generated in a way to enhance electron cross-field drift towards the anode. We estimated amount of current carried by equilibrium zeroth order distribution, which accounts for about 20% of total increased electron current in the non-uniform operation. The physical similarities of the macroscopic transport to microscopic instability induced electron transport are also compared.
机译:方位角非均匀推进剂供应操作显示出抑制放电振荡和​​增加轴向电子电流的典型特征。这些特征意味着,通过非均匀操作,可以在时空上不太严格的实验装置中研究霍尔推进器中振荡和电子传输的物理基础。从这一见解中,我们研究了非均匀推进剂运行的方位等离子体特性及其对放电振荡和​​电子交叉场传输的影响。图像分析结果表明,非线性等离子体结构在电子方位角E×B漂移的方向上伸长,表明该结构受电子支配。通过探针测量,观察到在方位方向上电子温度分布不均匀,并且认为相应的方位非谐电离部分地有助于抑制放电振荡。同样,等离子体电势和电子密度的宏观零阶方位角分布表明,该分布是自洽地生成的,其方式是增强了电子跨场向阳极的漂移。我们估计了平衡零级分布所携带的电流量,该电流约占非均匀操作中总增加电子电流的20%。还比较了宏观传输与微观不稳定性诱导的电子传输的物理相似性。

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