...
首页> 外文期刊>Plasma physics and controlled fusion >Investigation of the role of electron cyclotron resonance heating and magnetic configuration on the suprathermal ion population in the stellarator TJ-II using a luminescent probe
【24h】

Investigation of the role of electron cyclotron resonance heating and magnetic configuration on the suprathermal ion population in the stellarator TJ-II using a luminescent probe

机译:使用发光探针对电子回火谐振加热和磁性构型在恒温器TJ-II中的同步离子群中的作用研究

获取原文
获取原文并翻译 | 示例
           

摘要

Numerous observation exist of a population of high energetic ions with energies well above the corresponding thermal values in plasmas generated by electron cyclotron resonance (ECR) heating in TJ-II stellarator and in other magnetically confined plasmas devices. In this work we study the impact of ECR heating different conditions (positions and powers) on fast ions escaping from plasmas in the TJ-II stellarator. For this study, an ion luminescent probe operated in counting mode is used to measure the energy distribution of suprathermal ions, in the range from 1 to 30 keV. It is observed that some suprathermal ions characteristics (such as temperature, particle and energy fluxes) are related directly with the gyrotron power and focus position of the heating beam in the plasma. Moreover, it is found that suprathermal ion characteristics vary during a magnetic configuration scan (performed along a single discharge). By investigating the suprathermal ions escaping from plasmas generated using two gyrotrons, one with fixed power and the other modulated (on/off) at low frequency (10 Hz), the de-confinement time of the suprathermal ions can be measured, which is of the order of a few milliseconds (4ms). A model that uses a zero-dimensional power balance is used to understand the de-confinement times in terms of the interaction of suprathermal ions and plasma components. This model also can be used to interpret experimental results of energy loss due to suprathermal ions. Finally, observations of increases (peaks) in the population of escaping suprathermal ions, which are well localized at discrete energies, is documented, these peaks being observed in the energy distributions along a discharge.
机译:在TIJ-II螺旋桨中的电子回旋谐振(ECR)加热和其他磁局限质的等离子体装置中,具有高于高能的高能离子的高能离子群具有高能量离子的高能量离子群。在这项工作中,我们研究了ECR加热不同条件(位置和力量)对TJ-II螺旋液中等离子体逸出的快速离子的影响。对于该研究,以计数模式操作的离子发光探针用于测量上班子离子的能量分布,在1至30keV的范围内。观察到,一些类似的Suprathermal离子(例如温度,颗粒和能量助量)直接与等离子体中加热梁的焦点电力和聚焦位置相关。此外,发现Suprathermal离子特性在磁性配置扫描期间变化(沿着单个放电执行)。通过研究使用两个陀螺龙产生的等离子体逸出的上班子离子,在低频(10Hz)处具有固定功率和其他调制(ON / OFF)的一个,可以测量上前离子的去限制时间,即几毫秒(& 4ms)的顺序。使用零维功率平衡的模型用于了解超级离子和等离子体组分的相互作用方面的解除限制时间。该模型也可用于解释由于上班子离子引起的能量损失的实验结果。最后,记录了在离散能量下井地局部化的逸出的上班子离子的群体中增加(峰)的观察,这些峰在沿着放电的能量分布中观察到。

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