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Runaway electron generation and control

机译:失控电子发电和控制

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摘要

We present an overview of FTU experiments on runaway electron (RE) generation and control carried out through a comprehensive set of real-time (RT) diagnostics/control systems and newly installed RE diagnostics. An RE imaging spectrometer system detects visible and infrared synchrotron radiation. A Cherenkov probe measures RE escaping the plasma. A gamma camera provides hard x-ray radial profiles from RE bremsstrahlung interactions in the plasma. Experiments on the onset and suppression of RE show that the threshold electric field for RE generation is larger than that expected according to a purely collisional theory, but consistent with an increase due to synchrotron radiation losses. This might imply a lower density to be targeted with massive gas injection for RE suppression in ITER. Experiments on active control of disruption-generated RE have been performed through feedback on poloidal coils by implementing an RT boundary-reconstruction algorithm evaluated on magnetic moments. The results indicate that the slow plasma current ramp-down and the simultaneous reduction of the reference plasma external radius are beneficial in dissipating the RE beam energy and population, leading to reduced RE interactions with plasma facing components. RE active control is therefore suggested as a possible alternative or complementary technique to massive gas injection.
机译:我们概述了通过全面的实时(RT)诊断/控制系统和新安装的RE诊断进行的Runaway电子(RE)生成和控制进行的FTU实验。 RE成像光谱仪系统检测可见光和红外同步辐射辐射。 Cherenkov探针措施恢复等离子体。伽玛相机从血浆中的RE Bremsstrahlung相互作用提供硬X射线径向型材。重新开始的实验和抑制的实验表明,根据纯粹的碰撞理论,重新生成的阈值电场大于预期,但随着同步辐射损失的增加而符合。这可能意味着较低的密度才能瞄准大量气体喷射以便在磨料中抑制。通过在对磁矩评估的RT边界重建算法中实现对阵来源线圈的反馈来执行关于中断生成RE的主动控制的实验。结果表明,慢等离子体电流倾斜和参考等离子体外部半径的同时减少是有益于消散RE束能量和群体的,导致与等离子体面向部件的再相互作用。因此,建议将活性控制作为大量气体注入的可能的替代或互补技术。

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  • 作者单位

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    Univ Roma Tor Vergata Dip Ingn Civile Informat DICII Rome Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    Univ Roma Tor Vergata Dip Ingn Civile Informat DICII Rome Italy;

    Univ Carlos III Madrid Avda Univ 30 Madrid 28911 Spain;

    Univ Carlos III Madrid Avda Univ 30 Madrid 28911 Spain;

    Consorzio RFX Padua Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    IFP CNR Via R Cozzi 53 I-20125 Milan Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    IFP CNR Via R Cozzi 53 I-20125 Milan Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    IFP CNR Via R Cozzi 53 I-20125 Milan Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    ENEA Dipartimento FSN CR Frascati Via E Fermi 45 I-00044 Frascati Roma Italy;

    Consorzio RFX Padua Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

    tokamak; runaway electrons; synchrotron radiation;

    机译:Tokamak;失控电子;同步辐射;
  • 入库时间 2022-08-20 06:25:44

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