首页> 外文会议>International conference on plasma physics and controlled nuclear fusion research >A SPHERICAL TOKAMAK EMPLOYING MAGNETICALLY DRIVEN PLASMA GUNS
【24h】

A SPHERICAL TOKAMAK EMPLOYING MAGNETICALLY DRIVEN PLASMA GUNS

机译:采用磁力驱动的等离子枪的球形Tokamak

获取原文

摘要

In this study, the concept of a spherical tokamak with non-inductive current drive to be realized by an alternative method is presented. The analytical model of this conceptual design is a combination of peculiarities based on current drive by helicity injection as developed by Taylor and a spherical torus plasma with small aspect ratio (A between 1.2 and 2), and naturally large elongation (k in the range of 1.25 and 3) with an edge safety factor q_a between 1.5 and 4. The numerical scheme used in this computational experiment is constituted by the analytical expressions given by Peng and Wilson. In addition, the bootstrap current drive mechanism is also taken into consideration. These models are interactive. In the proposed system, a simulated single turn, very high current, toroidal field coil is controlled by a magnetically driven C-gun. The main part of the toroidal field coil consists of a shock heated, time varying, non-linear plasma belt in the flux conserver and a complementary back strap outside. The poloidal current loop is completed by a spark gap switch and a capacitor bank. The complete spherical torus plasma is formed by a multisegmented 24 C-guns system around the flux conserver. Because of the temperature and density gradients of these belts, pushed towards the centre of the flux conserver by the Lorentz forces, either toroidal or poloidal bootstrap currents are generated. On the other hand, helicity injection of the C-guns creates a second current drive mechanism. Consequently, a low aspect ratio, large elongated and strong paramagnetic spherical tokamak plasma is produced.
机译:在这项研究中,提出了具有替代方法的非电感电流驱动器的球形托卡马克的概念。这种概念设计的分析模型是基于电流驱动的特殊性的组合,如泰勒和具有小纵横比(介于1.2和2之间)的球形圆环等离子体,并且自然大的伸长率(在范围内1.25和3)具有1.5和4之间的边缘安全系数Q_A。该计算实验中使用的数值方案由PENG和WILSON给出的分析表达构成。此外,还考虑了引导电流驱动机制。这些模型是交互式的。在所提出的系统中,模拟的单匝,非常高的环形磁场线圈由磁驱动的C枪控制。环形磁场线圈的主要部分由磁通助剂中的冲击加热,时间变化,非线性等离子体带和外部的互补背带。通过火花隙开关和电容器组完成单极电流回路。完整的球形圆环等离子体由围绕磁通芯的多条空气的24个C枪系统形成。由于这些带的温度和密度梯度,由洛伦兹力推动朝向磁通助剂的中心,因此产生环形或面部引导电流。另一方面,C枪的螺旋性注入产生第二电流驱动机构。因此,产生低纵横比,大的细长和强壮的顺磁球形托卡马克等离子体。

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