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Error field assessment from driven rotation of stable external kinks at EXTRAP-T2R reversed field pinch

机译:在EXTRAP-T2R反向磁场夹点处通过稳定的外部扭结的驱动旋转来进行误差场评估

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摘要

A new non-disruptive error field (EF) assessment technique not restricted to low density and thus low beta was demonstrated at the EXTRAP-T2R reversed field pinch. Stable and marginally stable external kink modes of toroidal mode number n = 10 and n = 8, respectively, were generated, and their rotation sustained, by means of rotating magnetic perturbations of the same n. Due to finite EFs, and in spite of the applied perturbations rotating uniformly and having constant amplitude, the kink modes were observed to rotate non-uniformly and be modulated in amplitude. This behaviour was used to precisely infer the amplitude and approximately estimate the toroidal phase of the EF. A subsequent scan permitted to optimize the toroidal phase. The technique was tested against deliberately applied as well as intrinsic EFs of n = 8 and 10. Corrections equal and opposite to the estimated error fields were applied. The efficacy of the error compensation was indicated by the increased discharge duration and more uniform mode rotation in response to a uniformly rotating perturbation. The results are in good agreement with theory, and the extension to lower n, to tearing modes and to tokamaks, including ITER, is discussed.
机译:在EXTRAP-T2R反向场收缩中,展示了一种新的非破坏性误差场(EF)评估技术,其不仅限于低密度,因此具有低beta。分别产生了环形模式编号n = 10和n = 8的稳定和微弱的外部扭结模式,并通过旋转相同n的磁扰动来维持它们的旋转。由于有限的EF,并且尽管施加的扰动均匀地旋转并且具有恒定的振幅,但是扭结模式仍然观察到不均匀地旋转并且在振幅上被调制。此行为用于精确推断振幅并大致估计EF的环形相位。随后的扫描允许优化环形相位。针对故意应用的技术以及n = 8和10的固有EF进行了测试。应用了与估计误差域相同且相反的校正。响应于均匀旋转的扰动,增加的放电持续时间和更均匀的模式旋转表明了误差补偿的有效性。结果与理论吻合良好,并讨论了扩展至较低的n,撕裂模式和托卡马克,包括ITER。

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  • 来源
    《Nuclear fusion》 |2013年第4期|043018.1-043018.1|共1页
  • 作者单位

    Department of Applied Physics and Applied Mathematics, Columbia University, New York, NY 10027, USA;

    Division of Fusion Plasma Physics, Association EURATOM-VR, Alfven Laboratory, School of Electrical Engineering, Royal Institute of Technology KTH, SE-10044, Stockholm, Sweden;

    Division of Fusion Plasma Physics, Association EURATOM-VR, Alfven Laboratory, School of Electrical Engineering, Royal Institute of Technology KTH, SE-10044, Stockholm, Sweden;

    Division of Fusion Plasma Physics, Association EURATOM-VR, Alfven Laboratory, School of Electrical Engineering, Royal Institute of Technology KTH, SE-10044, Stockholm, Sweden;

    Division of Fusion Plasma Physics, Association EURATOM-VR, Alfven Laboratory, School of Electrical Engineering, Royal Institute of Technology KTH, SE-10044, Stockholm, Sweden;

  • 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
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