论文标题
模拟具有理想MHD的脉冲功率驱动等离子体
Simulating a pulsed power-driven plasma with ideal MHD
论文作者
论文摘要
我们描述了一种简单的实用数值方法,用于模拟通过脉冲发电机在真空室内驱动的等离子体。通常,在这种类型的模拟中,与等离子体相邻的真空区域被近似为高电阻,轻度流体。这涉及计算昂贵的求解器,描述了磁场通过该流体的扩散。取而代之的是,我们通过近似完美绝缘的真空作为光,完美的,无粘性的MHD流体并讨论这种违反直觉技术的适用性,从而提供了将脉冲发电机耦合到MHD域的配方。在等离子体表现出有趣的三维现象的情况下,这是更负担得起的理想MHD表示,这是由于实验的设计而表现出有趣的三维现象。我们验证了该耦合配方通过对精确溶解的通量压缩生成器以及类似类似NOH的解决方案进行建模,并证明了与理论解决方案的收敛性。我们还展示了使用此技术模拟复杂的三维脉冲功率设备的示例。我们将代码实施发布给公众。
We describe a simple practical numerical method for simulating plasma driven within a vacuum chamber by a pulsed power generator. Typically, in this type of simulation, the vacuum region adjacent to the plasma is approximated as a highly resistive, light fluid; this involves computationally expensive solvers describing the diffusion of the magnetic field through this fluid. Instead, we provide a recipe for coupling pulsed power generators to the MHD domain by approximating the perfectly insulating vacuum as a light, perfectly conducting, inviscid MHD fluid and discuss the applicability of this counter-intuitive technique. This, much more affordable ideal MHD representation, is particularly useful in situations where a plasma exhibits interesting three-dimensional phenomena, either due to the design of the experiment or due to developing instabilities. We verified that this coupling recipe works by modeling an exactly solvable flux compression generator as well as a self-similar Noh-like solution and demonstrated convergence to the theoretical solution. We also showed examples of simulating complex three-dimensional pulsed power devices with this technique. We release our code implementation to the public.