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The importance of the cathode plume and its interactions with the ion beam in numerical simulations of Hall thrusters

机译:在霍尔推力器的数值模拟中,阴极羽流的重要性及其与离子束的相互作用

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Numerical simulations with a 2-D axisymmetric multi-fluid plasma code illustrate the significance of the near-plume interactions in investigations of the anomalous electron transport in Hall thrusters. In our simulations, the transport of electrons is modeled using an anomalous collision frequency, nu(anom), yielding nu(anom) approximate to omega(ce) (i.e., the electron cyclotron frequency) in the near-plume region. We first show that restricting the anomalous collision frequency in this region to only within the ion beam, where the current density of ions is large, does not alter the plasma discharge in the Hall thruster as long as the interaction between the beam and the cathode plume is captured properly. These simulations suggest that electron transport occurs largely inside the beam. A second finding is on the significance of accounting for the ion acoustic turbulence (IAT), now known to occur in the vicinity of the cathode exit. We have included in our simulations a model of the IAT-driven anomalous collision frequency based on Sagdeev's model for saturation of the ion-acoustic instability. This implementation has allowed us to achieve excellent agreement with experimental measurements in the near plume of the H6 Hall thruster. Low frequency plasma oscillations similar in both magnitude and frequency to those found in the H6 thruster are recovered in our simulations when the model for the anomalous collision frequency in the cathode plume is included. Published by AIP Publishing.
机译:用二维轴对称多流体等离子体代码进行的数值模拟表明,在霍尔推力器中异常电子传输的研究中,近浮子相互作用的重要性。在我们的模拟中,使用反常的碰撞频率nu(anom)对电子的传输进行建模,从而在近浮子区域产生接近Ω(ce)的nu(anom)(即电子回旋​​加速器频率)。我们首先表明,仅在离子束中将离子的电流密度限制在该区域内,将异常碰撞频率限制为仅在离子束内,只要离子束与阴极羽流之间的相互作用就不会改变霍尔推进器中的等离子体放电被正确捕获。这些模拟表明,电子传输主要发生在电子束内部。第二个发现是考虑到现在已知发生在阴极出口附近的离子声湍流(IAT)的重要性。我们在模拟中包括了一个基于Sagdeev模型的IAT驱动的异常碰撞频率模型,用于使离子声不稳定性达到饱和。这种实现方式使我们能够在H6 Hall推进器的近羽状流中获得与实验测量的出色一致性。当包含阴极羽流中异常碰撞频率的模型时,在我们的仿真中可以恢复到与H6推进器中发现的低频等离子体振荡类似的幅度和频率。由AIP Publishing发布。

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