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Characterization of heat flux generated by ICRH heating with cantilevered bars and a slotted box Faraday screen

机译:用悬臂梁和开缝箱法拉第筛网对ICRH加热产生的热通量进行表征

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摘要

In the framework of the ion cyclotron resonance heating (ICRH) development led at CEA Cadarache, an actively cooled Faraday screen (FS) prototype with cantilevered horizontal bars and a slotted box has been designed to increase the heat exhaust capability (for high-power operation), reduce the parallel RF electric field along long field lines and qualify alternative mechanical solutions for ITER (bars are disconnected from the septum to reduce the stress level). The new FS has been installed on an existing ICRH antenna, and was tested during the 2011 Tore Supra experimental campaign. The antenna hosting the new screen exhibits high sensitivity to the edge plasma condition, some instabilities of electrical matching and improved heat exhaust capabilities in accordance with the thermo-mechanical design. RF-induced heat loads derived from IR thermography have been found to be about five times higher in the equatorial plane with the new design compared with the conventional design. The experimental results show that minimizing the parallel RF electric field along long field lines is not enough to reduce the wave-plasma interaction on the screen. This paper summarizes the experimental RF-induced heat load for several plasma scenarios and edge parameters (plasma current, density and heating power level) with emphasis on RF-sheath rectification and E × B convection generated in front of the antenna through the differential biasing of adjacent field lines.
机译:在CEA Cadarache领导的离子回旋共振加热(IC​​RH)开发框架中,设计了带有悬臂水平杆和开槽箱的主动冷却法拉第筛(FS)原型,以提高排热能力(用于大功率运行) ),减少沿长磁场线产生的平行RF电场,并确定ITER的替代机械解决方案(将钢筋从隔垫上断开以降低应力水平)。新的FS已安装在现有的ICRH天线上,并在2011年Tore Supra实验活动中进行了测试。根据热机械设计,容纳新屏幕的天线对边缘等离子体条件表现出高度的敏感性,一些电气匹配的不稳定性以及改善的排热能力。已经发现,与常规设计相比,采用新设计的新设计在红外赤道平面上产生的射频感应热负荷大约高出五倍。实验结果表明,最小化沿长场线的平行RF电场不足以减少屏幕上的波等离子体相互作用。本文总结了几种等离子体场景和边缘参数(等离子体电流,密度和加热功率水平)的实验性RF感应热负荷,重点是通过RF的差分偏置在天线前部产生的RF鞘整流和E×B对流。相邻的磁力线。

著录项

  • 来源
    《Nuclear fusion》 |2012年第10期|p.103010.1-103010.11|共11页
  • 作者单位

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    ITER Organization, CS 90 046, 13067 St Paul Lez Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

    CEA, IRFM, F-13108 Saint-Paul-lez-Durance, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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