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Simulations of plasma sheaths using continuum kinetic models

机译:使用连续体动力学模型模拟等离子体护套

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Summary form only given. When plasma interacts with a surface, a plasma sheath forms at the interface, which is typically a region of net positive space charge. Ions, accelerated by the electric field in the sheath region, and hot electrons are known to cause emission from the surface. This can have consequences for devices such as Hall thrusters as electron emissions can increase the rate of erosion of the electrodes affecting performance and longevity of the thrusters - an important concern for space-bound missions. The length-scale of sheaths is small in comparison to the undisturbed plasma (on order of the Debye length, λD) yet the sheath has a global effect on plasma and needs to be included self-consistently in computer simulations. This usually means resolving the Debye length and the plasma oscillation frequency, which makes global and complex simulations extremely demanding in terms of the computational cost.We will present simulations of classical sheaths using a continuum kinetic model where we directly solve the Boltzmann equation for each of the ion and electron species using the discontinuous Galerkin method. Furthermore, we will present results of sheaths in the presence of magnetic fields. We will build on the work of Loizu et al. on the magnetic presheath in the cold ion limit, which uses relatively small magnetic field incident angles due to its application to tokamaks. In our work we plan to focus on Hall thruster relevant geometries with magnetic field perpendicular to the surface. We will also extend previous studies of magnetized sheaths and presheaths with warm ions.
机译:摘要表格仅给出。当等离子体与表面相互作用时,界面处的等离子体鞘形成,其通常是净正空间电荷的区域。被护套区域中的电场加速的离子,已知热电子引起表面发射。这可能对霍尔推进器等设备产生后果,因为电子排放可以增加影响推进器的性能和寿命的电极的腐蚀速率 - 对于空间束缚任务的重要关注。与未受干扰的等离子体相比,鞘的长度小(按照德语长度,λd)但是护套对等离子体具有全局效果,并且需要在计算机模拟中包括自持续存在。这通常意味着解决德语长度和等离子体振荡频率,这使得全局和复杂的模拟在计算成本方面非常苛刻。我们将使用连续的动力学模型来呈现古典护套的模拟,在那里我们直接解决每个的Boltzmann方程离子和电子物种使用不连续的Galerkin方法。此外,我们将在磁场存在下呈现护套的结果。我们将建立在Loizu等人的工作。在冷离子极限中的磁性预分子上,由于其应用于托卡马克而导致的磁场入射角相对小的磁场入射角。在我们的工作中,我们计划专注于霍尔推进器相关几何形状,磁场垂直于表面。我们还将通过温暖的离子对磁化护套和PrEeheaths进行以前的研究。

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