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Overview of the recent experimental research on the J-TEXT tokamak

机译:关于J-TEXT托卡马克的最新实验研究概述

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Recent J-TEXT research has highlighted the significance of the role that non-axisymmetric magnetic perturbations, so called three-dimensional (3D) magnetic perturbation (MP) fields, play in a fundamentally 2D concept, i.e. tokamaks. This paper presents the J-TEXT results achieved over the last two years, especially on the impacts of 3D MP fields on magnetohydrodynamic instabilities, plasma disruptions and plasma turbulence transport.On J-TEXT, the resonant MP (RMP) system, capable of providing either a static or a high frequency (up to 8 kHz) rotating RMP field, has been upgraded by adding a new set of 12 in-vessel saddle coils. The shattered pellet injection system was built in J-TEXT in the spring of 2018. The new capabilities advance J-TEXT to be at the forefront of international magnetic fusion facilities, allowing flexible study of 3D effects and disruption mitigation in a tokamak.The fast rotating RMP field has been successfully applied for avoidance of mode locking and the prevention of plasma disruption. A new control strategy, which applies pulsed RMP to the tearing mode only during the accelerating phase region, was proved by nonlinear numerical modelling to be efficient in accelerating mode rotation and even completely suppresses the mode. Remarkably, the rotating tearing mode was completely suppressed by the electrode biasing. The impacts of 3D magnetic topology on the turbulence has been investigated on J-TEXT. It is found that the fluctuations of electron density, electron temperature and plasma potential can be significantly modulated by the island structure, and a larger fluctuation level appears at the X-point of islands. The suppression of runaway electrons during disruptions is essential to the operation of ITER, and it has been reached by utilizing the 3D magnetic perturbations on J-TEXT. This may provide an alternative mechanism of runaway suppression for large-scale tokamaks and ITER.
机译:最近的J-TEXT研究强调了非轴对称磁扰动(所谓的三维(3D)磁扰动(MP)场)在根本上是2D概念(即托卡马克)中扮演的角色的重要性。本文介绍了过去两年取得的J-TEXT结果,特别是3D MP场对磁流体动力学不稳定性,等离子体破坏和等离子体湍流传输的影响。在J-TEXT上,共振MP(RMP)系统能够提供静态或高频(最高8 kHz)旋转RMP磁场已通过添加一组新的12个车载鞍形线圈进行了升级。破碎的颗粒注射系统于2018年春季在J-TEXT中构建。新功能使J-TEXT处于国际磁聚变设备的最前沿,从而可以在托卡马克中灵活地研究3D效应和缓解干扰。 RMP旋转场已成功应用于避免锁模和防止等离子体破坏。通过非线性数值模型证明了一种新的控制策略,该策略仅在加速相位区域内将脉冲RMP应用于撕裂模式,可以有效地加速模式旋转,甚至完全抑制模式。显着地,通过电极偏压完全抑制了旋转撕裂模式。在J-TEXT上研究了3D磁性拓扑对湍流的影响。发现岛结构可以显着地调节电子密度,电子温度和等离子体电势的波动,并且在岛的X点处出现较大的波动水平。抑制破坏过程中的失控电子对于ITER的运行至关重要,这已经通过利用J-TEXT上的3D磁扰动得以实现。这可以为大型托卡马克和ITER提供一种替代的失控抑制机制。

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