首页> 外文期刊>Nuclear fusion >Dynamics and control of resistive wall modes with magnetic feedback control coils: experiment and theory
【24h】

Dynamics and control of resistive wall modes with magnetic feedback control coils: experiment and theory

机译:带有磁反馈控制线圈的电阻壁模式的动力学和控制:实验和理论

获取原文
获取原文并翻译 | 示例
       

摘要

Fundamental theory, experimental observations and modelling of resistive wall mode (RWM) dynamics and active feedback control are reported. In the RWM, the plasma responds to and interacts with external current-carrying conductors. Although this response is complex, it is still possible to construct simple but accurate models for kink dynamics by combining separate determinations for the external currents, using the VALEN code, and for the plasma's inductance matrix, using an magnetohydrodynamics code such as DCQN. These computations have been performed for wall-stabilized kink modes in the HBT-EP device, and they illustrate a remarkable feature of the theory: when the plasma's inductance matrix is dominated by a single eigenmode and when the surrounding current-carrying structures are properly characterized, then the resonant kink response is represented by a small number of parameters. In HBT-EP, RWM dynamics are studied by programming quasi-static and rapid 'phase-flip' changes of the external magnetic perturbation and directly measuring the plasma response as a function of kink stability and plasma rotation. The response evolves in time, is easily measured, and involves excitation of both the wall-stabilized kink and the RWM. High speed, active feedback control of the RWM using VALEN-optimized mode-control techniques and high-throughput digital processors is also reported. Using newly installed control coils that directly couple to the plasma surface, experiments demonstrate feedback suppression of the kink instability in rapidly rotating plasmas near the ideal wall stability limit.
机译:报告了基础理论,实验观察以及电阻壁模式(RWM)动力学和主动反馈控制的建模。在RWM中,等离子体响应外部载流导体并与之相互作用。尽管此响应很复杂,但仍然可以通过组合使用VALEN代码对外部电流的单独确定以及使用磁流体力学代码(例如DCQN)来组合对外部电流的单独确定,从而为弯折动力学构建简单而准确的模型。这些计算是针对HBT-EP装置中的壁稳定扭结模式进行的,它们说明了该理论的显着特征:当等离子体的电感矩阵由单个本征模式控制时,以及周围的载流结构得到适当表征时,则共振弯折响应由少量参数表示。在HBT-EP中,通过对外部磁扰动的准静态和快速“相位翻转”变化进行编程并直接测量作为扭结稳定性和等离子体旋转函数的等离子体响应,来研究RWM动力学。响应随时间变化,易于测量,并且涉及到壁稳定扭结和RWM的激发。还报告了使用VALEN优化的模式控制技术和高吞吐量数字处理器对RWM进行高速,主动反馈控制的情况。使用新安装的直接耦合到等离子体表面的控制线圈,实验证明了在接近理想壁稳定性极限的快速旋转等离子体中,扭结不稳定性的反馈抑制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号