...
首页> 外文期刊>Physics of plasmas >A neoclassical drift-magnetohydrodynamical fluid model of the interaction of a magnetic island chain with a resonant error-field in a high temperature tokamak plasma
【24h】

A neoclassical drift-magnetohydrodynamical fluid model of the interaction of a magnetic island chain with a resonant error-field in a high temperature tokamak plasma

机译:一种新古典漂移磁流体动力学流体模型,磁岛链与高温托卡卡克血浆中谐振误差场相互作用

获取原文
获取原文并翻译 | 示例
           

摘要

A two-fluid, neoclassical theory of the interaction of a single magnetic island chain with a resonant error-field in a quasi-cylindrical, low-beta, tokamak plasma is presented. The plasmas typically found in large hot tokamaks lie in the so-called weak neoclassical flow-damping regime in which the neoclassical ion stress tensor is not the dominant term in the ion parallel equation of motion. Nevertheless, flow-damping in such plasmas dominates ion perpendicular viscosity, and is largely responsible for determining the phase velocity of a freely rotating island chain (which is in the ion diamagnetic direction relative to the local E x B frame at the rational surface). The critical vacuum island width required to lock the island chain is mostly determined by the ion neoclassical poloidal flow damping rate at the rational surface. The stabilizing effect of the average field-line curvature, as well as the destabilizing effect of the perturbed bootstrap current, is the same for a freely rotating, a non-uniformly rotating, and a locked island chain. The destabilizing effect of the error-field averages to zero when the chain is rotating and only manifests itself when the chain locks. The perturbed ion polarization current has a small destabilizing effect on a freely rotating island chain, but a large destabilizing effect on both a non-uniformly rotating and a locked island chain. This behavior may account for the experimentally observed fact that locked island chains are much more unstable than corresponding freely rotating chains. Published by AIP Publishing.
机译:呈现了一种双液,新古典主义理论,单个磁岛链与准圆柱形,低β,托卡马克等离子体中的谐振误差场的相互作用。通常在大型热Tokamak中发现的等离子体位于所谓的弱的新古典流动阻尼方案中,其中新古典离子应力张量不是离子平行方程中的主导术语。然而,在这种等离子体中的流量阻尼占据了离子垂直粘度,并且很大程度上负责确定自由旋转岛链的相速度(其相对于理性表面的局部e×B帧在离子抗磁方向上)。锁定岛链所需的临界真空岛宽度主要由原始表面处的离子新古典球形单流量阻尼速率决定。平均场线曲率的稳定效果以及扰动自动举射电流的稳定效果,对于自由旋转,不均匀旋转和锁定的岛链是相同的。当链旋转时,误差场平均值的稳定效果为零,并且当链锁时只能表现出来。扰动离子偏振电流对自由旋转岛链具有小的稳定效果,而是对非均匀旋转和锁定岛链的稳定效果大。这种行为可能考虑到实验观察到的事实,即锁定的岛链比相应的自由旋转链更不稳定。通过AIP发布发布。

著录项

相似文献

  • 外文文献
  • 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