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Comparison of runaway electron generation parameters in small, medium-sized and large tokamaks-A survey of experiments in COMPASS,TCV, ASDEX-Upgrade and JET

机译:小型,中型和大型托卡马克中失控电子生成参数的比较-COMPASS,TCV,ASDEX-Upgrade和JET中的实验调查

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摘要

This paper presents a survey of the experiments on runaway electrons (RE) carried out recently in frames of EUROFusion Consortium in different tokamaks: COMPASS, ASDEX-Upgrade, TCV and JET. Massive gas injection (MGI) has been used in different scenarios for RE generation in small and medium-sized tokamaks to elaborate the most efficient and reliable ones for future RE experiments. New data on RE generated at disruptions in COMPASS and ASDEX-Upgrade was collected and added to the JET database. Different accessible parameters of disruptions, such as current quench rate, conversion rate of plasma current into runaways, etc have been analysed for each tokamak and compared to JET data. It was shown, that tokamaks with larger geometrical sizes provide the wider limits for spatial and temporal variation of plasma parameters during disruptions, thus extending the parameter space for RE generation. The second part of experiments was dedicated to study of RE generation in stationary discharges in COMPASS, TCV and JET. Injection of Ne/Ar have been used to mock-up the JET MGI runaway suppression experiments. Secondary RE avalanching was identified and quantified for the first time in the TCV tokamak in RE generating discharges after massive Ne injection. Simulations of the primary RE generation and secondary avalanching dynamics in stationary discharges has demonstrated that RE current fraction created via avalanching could achieve up to 70-75% of the total plasma current in TCV. Relaxations which are reminiscent the phenomena associated to the kinetic instability driven by RE have been detected in RE discharges in TCV. Macroscopic parameters of RE dominating discharges in TCV before and after onset of the instability fit well to the empirical instability criterion, which was established in the early tokamaks and examined by results of recent numerical simulations.
机译:本文介绍了最近在EUROFusion财团的不同托卡马克中进行的失控电子(RE)实验的调查结果:COMPASS,ASDEX-Upgrade,TCV和JET。在中小型托卡马克中,大量气体注入(MGI)已用于不同的场景中以产生可再生能源,从而为将来的可再生能源实验提供了最有效,最可靠的方法。收集了COMPASS和ASDEX-Upgrade中断时产生的有关RE的新数据,并将其添加到JET数据库中。对于每个托卡马克,已经分析了各种不同的可访问参数,例如电流猝灭率,等离子体电流转换为失控率等,并与JET数据进行了比较。结果表明,具有较大几何尺寸的托卡马克在破坏过程中为等离子体参数的时空变化提供了更宽的限制,从而扩展了用于RE产生的参数空间。实验的第二部分致力于研究COMPASS,TCV和JET中固定放电中的RE生成。 Ne / Ar的注入已被用于模拟JET MGI失控抑制实验。大量稀土元素注入后,在可再生能源产生的放电中,首次在TCV托卡马克中鉴定并定量了二次可再生能源雪崩。对固定放电中主要RE生成和次要雪崩动力学的仿真表明,通过雪崩产生的RE电流份额可以达到TCV中总等离子体电流的70%至75%。在TCV的RE放电中已检测到松弛现象,这种松弛现象使人联想到由RE驱动的动力学不稳定性。 TCV在不稳定发生之前和之后,RE占主导地位的放电的宏观参数与经验不稳定性标准非常吻合,该标准是在托卡马克早期建立的,并由最近的数值模拟结果进行了检验。

著录项

  • 来源
    《Nuclear fusion》 |2018年第1期|016014.1-016014.15|共15页
  • 作者单位

    Instituto de Plasmas e Fusao Nuclear, Institute Superior Tecnico, Universidade de Lisboa, Lisboa, Portugal;

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

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Swiss Plasma Centre, EPFL, CH-1015 Lausanne, Switzerland;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    IPP AS CR, Za Slovankou 3, CZ-18200 Prague, Czechia;

    IPP AS CR, Za Slovankou 3, CZ-18200 Prague, Czechia;

    Swiss Plasma Centre, EPFL, CH-1015 Lausanne, Switzerland;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom;

    Laboratoire de Physique des Plasmas-Laboratorium voor Plasmafysica, ERM/KMS, B-1000 Brussels, Belgium;

    Ioffe Institute, St. Petersburg, 194021, Russian Federation;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom;

    Ioffe Institute, St. Petersburg, 194021, Russian Federation;

    Swiss Plasma Centre, EPFL, CH-1015 Lausanne, Switzerland;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Swiss Plasma Centre, EPFL, CH-1015 Lausanne, Switzerland;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    IPP AS CR, Za Slovankou 3, CZ-18200 Prague, Czechia;

    Consorzio RFX, corso Stati Uniti 4, 35127 Padova, Italy;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    IPP AS CR, Za Slovankou 3, CZ-18200 Prague, Czechia;

    Department of Physics, University College Cork, Cork, Ireland;

    IPP AS CR, Za Slovankou 3, CZ-18200 Prague, Czechia;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom;

    Max-Planck-Institut fur Plasmaphysik, Garching D-85748, Germany;

    Instituto de Plasmas e Fusao Nuclear, Institute Superior Tecnico, Universidade de Lisboa, Lisboa, Portugal;

    IPP AS CR, Za Slovankou 3, CZ-18200 Prague, Czechia;

    Istituto di Fisica del Plasma, CNR, Milano, Italy;

    Department of Applied Physics, Ghent University, Sint-Pietersnieuwstraat 41, Technicum B4, Ghent B-9000, Belgium;

    Istituto di Fisica del Plasma, CNR, Milano, Italy,Dipattimento di Fisica 'G. Occhialini', Universita di Milano-Bicocca, Milano, Italy;

    CCFE, Culham Science Centre, Abingdon, OX14 3DB, United Kingdom;

  • 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

    Tokamak; disruptions; runaway electrons; hard x rays;

    机译:托卡马克破坏;电子失控硬X射线;

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