首页> 外文期刊>Plasma physics and controlled fusion >Sawtooth control in JET with ITER relevant low field side resonance ion cyclotron resonance heating and ITER-like wall
【24h】

Sawtooth control in JET with ITER relevant low field side resonance ion cyclotron resonance heating and ITER-like wall

机译:带有ITER相关低场侧共振离子回旋加速器共振加热和类ITER壁的JET中的锯齿控制

获取原文
获取原文并翻译 | 示例
       

摘要

New experiments at JET with the ITER-like wall show for the first time that ITER-relevant low field side resonance first harmonic ion cyclotron resonance heating (ICRH) can be used to control sawteeth that have been initially lengthened by fast particles. In contrast to previous (Graves et al 2012 Nat. Commun. 3 624) high field side resonance sawtooth control experiments undertaken at JET, it is found that the sawteeth of L-mode plasmas can be controlled with less accurate alignment between the resonance layer and the sawtooth inversion radius. This advantage, as well as the discovery that sawteeth can be shortened with various antenna phasings, including dipole, indicates that ICRH is a particularly effective and versatile tool that can be used in future fusion machines for controlling sawteeth. Without sawtooth control, neoclassical tearing modes (NTMs) and locked modes were triggered at very low normalised beta. High power H-mode experiments show the extent to which ICRH can be tuned to control sawteeth and NTMs while simultaneously providing effective electron heating with improved flushing of high Z core impurities. Dedicated ICRH simulations using SELFO, SCENIC and EVE, including wide drift orbit effects, explain why sawtooth control is effective with various antenna phasings and show that the sawtooth control mechanism cannot be explained by enhancement of the magnetic shear. Hybrid kinetic-magnetohydrodynamic stability calculations using MISHKA and HAGIS unravel the optimal sawtooth control regimes in these ITER relevant plasma conditions.
机译:在JET上使用类似ITER的壁进行的新实验首次表明,与ITER相关的低场侧共振第一谐波回旋共振加热(IC​​RH)可用于控制最初由快粒子加长的锯齿。与先前在JET进行的(Graves等人2012 Nat。Commun。3 624)高场侧共振锯齿控制实验相反,发现L型等离子体的锯齿可以通过共振层与共振层之间较不精确的对准来控制。锯齿反转半径。这一优势,以及发现可以通过包括偶极子在内的各种天线定相来缩短锯齿的发现,表明ICRH是一种特别有效且用途广泛的工具,可用于未来的融合机中控制锯齿。在没有锯齿控制的情况下,新古典主义的撕裂模式(NTM)和锁定模式在极低的归一化beta时触发。高功率H模式实验表明,可以调节ICRH的程度以控制锯齿和NTM,同时提供有效的电子加热并改善高Z核杂质的冲洗。使用SELFO,SCENIC和EVE进行的专用ICRH仿真(包括宽漂移轨道效应)解释了为什么锯齿控制在各种天线相位下都有效,并且表明锯齿控制机制无法通过增强磁剪切来解释。使用MISHKA和HAGIS进行的混合动磁磁流体动力稳定性计算,揭示了在这些ITER相关血浆条件下的最佳锯齿控制方案。

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