Roles of non-axisymmetric perturbations in free drift vertical displacement events on EAST

IF 3.5 1区 物理与天体物理 Q1 PHYSICS, FLUIDS & PLASMAS Nuclear Fusion Pub Date : 2024-06-27 DOI:10.1088/1741-4326/ad52a6
Haolong Li, Ping Zhu, Hang Li, Muquan Wu, Xiang Zhu and Jingting Luo
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Abstract

The safe operation of most tokamaks, especially the large ones, relies on the feedback control of vertical displacement events (VDEs). However, most of these feedback control systems are based on axisymmetric VDE models. In this study, we use NIMROD simulations to study the role of non-axisymmetric perturbations in free drift vertical displacement events on EAST. The high-n modes in the non-axisymmetric VDE grow first, which drives the formation of high-n magnetic island chains. Subsequently, the magnetic island chains grow and overlap with each other, leading to the destruction of the magnetic flux surface, which induces a minor disruption and accelerates the start of the following major disruption. The magnetic island and the stochastic magnetic field allow the toroidally non-axisymmetric poloidal plasma current to jet towards the hoop force direction, forming finger-like and filamentary structures. Such a plasma current non-axisymmetry strongly depends on the anisotropy in the thermal transport coefficients.
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非轴对称扰动在东隅自由漂移垂直位移事件中的作用
大多数托卡马克(尤其是大型托卡马克)的安全运行都依赖于对垂直位移事件(VDE)的反馈控制。然而,这些反馈控制系统大多基于轴对称 VDE 模型。在本研究中,我们使用 NIMROD 模拟来研究非轴对称扰动在 EAST 自由漂移垂直位移事件中的作用。非轴对称 VDE 中的高 n 模首先增长,这推动了高 n 磁岛链的形成。随后,磁岛链增长并相互重叠,导致磁通面破坏,从而引发小扰动,并加速了随后大扰动的开始。磁岛和随机磁场使得环状非轴对称极性等离子体电流向箍力方向喷射,形成指状和丝状结构。这种等离子体电流的非轴对称性在很大程度上取决于热传输系数的各向异性。
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来源期刊
Nuclear Fusion
Nuclear Fusion 物理-物理:核物理
CiteScore
6.30
自引率
39.40%
发文量
411
审稿时长
2.6 months
期刊介绍: Nuclear Fusion publishes articles making significant advances to the field of controlled thermonuclear fusion. The journal scope includes: -the production, heating and confinement of high temperature plasmas; -the physical properties of such plasmas; -the experimental or theoretical methods of exploring or explaining them; -fusion reactor physics; -reactor concepts; and -fusion technologies. The journal has a dedicated Associate Editor for inertial confinement fusion.
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