论文标题

使用陀螺仪和扩展MHD模型模拟引信轴对称稳定性

Simulation of FuZE axisymmetric stability using gyrokinetic and extended-MHD models

论文作者

Geyko, V. I., Angus, J. R., Dorf, M. A.

论文摘要

轴对称($ M = 0 $)使用高阶有限体积代码cogent进行剪切流Z-Pinch等离子体的旋转和扩展MHD模拟。目前的陀螺仪模型解决了与静电陀螺仪方程相连的离子和电子物种的陀螺仪方程的长波长极限,以获得静电电位。电磁MHD模型包括陀螺仪压力张量,磁管电子和离子热通量的影响以及概括的欧姆定律。这项工作的一个突出特征是,血浆密度和温度的径向轮廓取自Fuze实验,并作为MHD力量平衡方程的解决方案获得了磁场曲线。这种方法允许解决现实的等离子体参数,并提供有关当前和计划的实验的见解。特别是,由于嵌入式引导中心($ e {\ times} b $)漂移具有强大的径向剪切,即使在没有流体流剪切的情况下,也可以有助于Z-Pinch稳定,因此径向曲线在稳定中起着重要作用。引信等离子体参数的模拟结果显示,线性生长速率的降低,流动剪切的增加,即使对于轴向流的较大(与Alfvén速度)的较大(可与Alfvén速度相当),也不会观察到线性状态的完全稳定。还研究了引信等离子体的非线性稳定性特性,发现剖面宽性可以在非线性方向上具有明显的稳定作用。

Axisymmetric ($m=0$) gyrokinetic and extended-MHD simulations of sheared-flow Z-pinch plasma are performed with the high-order finite volume code COGENT. The present gyrokinetic model solves the long-wavelength limit of the gyrokinetic equation for both ion and electron species coupled to the electrostatic gyro-Poisson equation for the electrostatic potential. The electromagnetic MHD model includes the effects of the gyro-viscous pressure tensor, diamagnetic electron and ion heat fluxes, and generalized Ohm's law. A prominent feature of this work is that the radial profiles for the plasma density and temperature are taken from the FuZE experiment and the magnetic field profile is obtained as a solution of the MHD force balance equation. Such an approach allows to address realistic plasma parameters and provide insights into the current and planned experiments. In particular, it is demonstrated that the radial profiles play an important role in stabilization, as the embedded guiding center ($E{\times} B$) drift has a strong radial shear, which can contribute to the Z-pinch stabilization even in the absence of the fluid flow shear. The results of simulations for the FuZE plasma parameters show a decrease of the linear growth rate with an increase in the flow shear, however full stabilization in the linear regime is not observed even for large (comparable to the Alfvén velocity) radial variations of the axial flow. Nonlinear stability properties of the FuZE plasmas are also studied and it is found that profile broadening can have a pronounced stabilizing effect in the nonlinear regime.

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