首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Development of a Cherenkov-type diagnostic system to study runaway electrons within the COMPASS tokamak
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Development of a Cherenkov-type diagnostic system to study runaway electrons within the COMPASS tokamak

机译:开发Cherenkov型诊断系统,以研究罗盘托卡马克内的失控电子

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摘要

Direct measurements of fast electrons, which are produced in high-temperature plasma and escape from tokamak-type facilities, are of particular interest for ITER and future fusion devices, where intense runaway electrons (RE) can significantly damage the firstwall components. Therefore, the runaway control and mitigation based on credible measuring methods should be developed already in present devices. A team from the National Centre for Nuclear Research (NCBJ), Poland, developed special probes equipped with Cherenkov-type detectors for measurements of the fast electrons within edge plasmas of tokamaks. Studies of the fast runaway electrons were extensively carried out at the COMPASS tokamak at the Institute of Plasma Physics (IPP) in Prague during experimental campaigns in 2014–2016. In order to investigate an electron-beam energy distribution a three-channel probe equipped with the Cherenkov-type detectors sensitive to electrons of different energies has been constructed. The measurements performed by means of these detectors showed that the first fast electron peak appears usually in the current ramp-up phase, even before the hard Xrays (HXR) pulse. Some electron signals can also be observed during subsequent HXR emissions. However, the most distinct electron peaks in all energy channels appear mainly during the plasma disruption. A correlation of Cherenkov signals with the MHD activity was also studied.
机译:在高温等离子体中产生的快速电子的直接测量,并逃离Tokamak型设施,对于ITER和未来的融合装置特别感兴趣,其中强烈的失控电子(RE)可以显着损坏Firstwall部件。因此,基于可信测量方法的失控控制和缓解应该是在现有设备中开发的。来自国家核研究中心(NCBJ),波兰的一个团队,开发了配备Cherenkov型探测器的特殊探针,用于测量托卡马克的边缘等离子体内的快速电子。在2014 - 2016年的实验活动期间在Prague的Prasma物理学研究所(IPP)的指南针托卡纳克在罗盘托卡马克广泛地进行了对快速失控电子的研究。为了研究电子束能量分布,已经构建了具有与不同能量的电子敏感的Cherenkov型检测器配备的三通道探头。借助于这些检测器执行的测量表明,甚至在硬XRAYS(HXR)脉冲之前,通常在电流斜坡相位中出现第一快电子峰值。在随后的HXR排放期间也可以观察到一些电子信号。然而,所有能量通道中最明显的电子峰值主要出现在等离子体中断期间。还研究了Cherenkov信号与MHD活性的相关性。

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  • 作者单位

    National Centre for Nuclear Research (NCBJ) 7 Andrzeja Soltana Str. 05-400 Otwock Poland;

    National Centre for Nuclear Research (NCBJ) 7 Andrzeja Soltana Str. 05-400 Otwock Poland;

    National Centre for Nuclear Research (NCBJ) 7 Andrzeja Soltana Str. 05-400 Otwock Poland;

    National Centre for Nuclear Research (NCBJ) 7 Andrzeja Soltana Str. 05-400 Otwock Poland;

    National Centre for Nuclear Research (NCBJ) 7 Andrzeja Soltana Str. 05-400 Otwock Poland;

    National Centre for Nuclear Research (NCBJ) 7 Andrzeja Soltana Str. 05-400 Otwock Poland;

    National Centre for Nuclear Research (NCBJ) 7 Andrzeja Soltana Str. 05-400 Otwock Poland;

    Institute of Plasma Physics of the Czech Academy of Sciences Za Slovankou 3 182 00 Prague 8 Czech Republic;

    Institute of Plasma Physics of the Czech Academy of Sciences Za Slovankou 3 182 00 Prague 8 Czech Republic;

    Institute of Plasma Physics of the Czech Academy of Sciences Za Slovankou 3 182 00 Prague 8 Czech Republic;

    Institute of Plasma Physics of the Czech Academy of Sciences Za Slovankou 3 182 00 Prague 8 Czech Republic;

    Institute of Plasma Physics of the Czech Academy of Sciences Za Slovankou 3 182 00 Prague 8 Czech Republic;

    Institute of Plasma Physics of the Czech Academy of Sciences Za Slovankou 3 182 00 Prague 8 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仪器、仪表;
  • 关键词

    Nuclear instruments and methods for hot plasma diagnostics; Plasma diagnostics - probes;

    机译:核仪器和热等离子体诊断方法;血浆诊断 - 探针;

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