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Early evolution of electron cyclotron driven current during suppression of tearing modes in a circular tokamak

机译:在圆形托卡马克中抑制撕裂模式期间电子回旋加速器驱动电流的早期演化

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When electron cyclotron (EC) driven current is first applied to the inside of a magnetic island, the current spreads throughout the island and after a short period achieves a steady level. Using a two equation fluid model for the EC current that allows us to examine this early evolution in detail, we analyze high-resolution simulations of a 2/1 classical tearing mode in a low-beta large aspect-ratio circular tokamak. These simulations use a nonlinear 3D reduced-MHD fluid model and the JOREK code. During the initial period where the EC driven current grows and spreads throughout the magnetic island, it is not a function of the magnetic flux. However, once it has reached a steady-state, it should be a flux function. We demonstrate numerically that if sufficiently resolved toroidally, the steady-state EC driven current becomes approximately a flux function. We discuss the physics of this early period of EC evolution and its impact on the size of the magnetic island.
机译:当首先将电子回旋加速器(EC)驱动的电流施加到磁岛内部时,电流会散布到整个磁岛中,并在短时间内达到稳定水平。使用用于EC电流的两个方程式流体模型,可以让我们详细研究这种早期演化,我们在低beta大纵横比圆形托卡马克中分析了2/1经典撕裂模式的高分辨率模拟。这些模拟使用非线性3D减少MHD流体模型和JOREK代码。在EC驱动电流在整个磁岛中生长和扩散的初始时期,它不是磁通量的函数。但是,一旦达到稳态,它应该是通量函数。我们用数值方法证明,如果充分解析了环面,则稳态EC驱动电流变为近似磁通函数。我们讨论了EC演化早期的物理学及其对磁岛大小的影响。

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