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Simulations of edge localised mode instabilities in MAST-U Super-X tokamak plasmas

机译:MAST-U Super-X Tokamak等离子体中边缘本地化模式稳定性的模拟

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摘要

The high heat fluxes to the divertor during edge localised mode (ELM) instabilities have to be reduced for a sustainable future tokamak reactor. A solution to reduce the heat fluxes could be the Super-X divertor, which will be tested on MAST-U. ELM simulations for MAST-U Super-X tokamak plasmas have been obtained, using JOREK. A factor 10 decrease in the peak heat flux to the outer target and almost a factor 8 decrease in the ELM energy fluence when comparing the Super-X to a conventional divertor configuration has been found. A detached MAST-U case, after the roll-over in the target parallel electron density flux, is used as a starting point for ELM burn-through simulations. The plasma burns through the neutrals front during the ELM causing the divertor plasma to re-attach. After the crash a transition back to detachment is indicated, where the recovery to pre-ELM divertor conditions occurs in a few milliseconds, when the neutral pressure is high in the divertor. Recovery times are shorter than the inter-ELM phase in previous MAST experiments. The peak ELM energy fluence obtained after the ELM burn-through is 0.82 kJ/m~2, which is significantly lower than that predicted from the empirical scaling of the ELM energy fluence - indicating promising results for future MAST-U operations.
机译:对于可持续的未来Tokamak反应堆,必须减少在边缘局部模式(ELM)不稳定性期间的高热通量。减少热量通量的解决方案可以是超级X偏移器,其将在桅杆上进行测试。使用Jorek获得了MAST-U Super-X Tokamak等离子体的ELM模拟。在发现将Super-X比较到传统的偏移器配置比较时,将峰值热通量降低到外目标的峰值热通量,并且在将超级X比较到传统的偏移器配置时,ELM能量的几乎减小。在目标并联电子密度通量翻转后,将拆卸的桅杆 - U例用作ELM燃烧仿真的起点。在ELM期间,等离子体燃烧通过中性前部,导致置换器等离子体重新连接。在碰撞后回到脱离之后,指示在偏移器中中性压力高时,在几毫秒内发生恢复到ELM前偏移器条件。恢复时间比以前的桅杆实验中的ELM间相短。 ELM烧伤后获得的峰值ELM能量流量为0.82 kJ / m〜2,其显着低于榆树能量流量的经验缩放预测的峰值,这表明未来桅杆操作的有希望的结果。

著录项

  • 来源
    《Nuclear fusion》 |2020年第6期|066021.1-066021.19|共19页
  • 作者单位

    York Plasma Institute Department of Physics University of York York United Kingdom of Great Britain and Northern Ireland CCFE Culham Science Centre Abingdon United Kingdom of Great Britain and Northern Ireland;

    CCFE Culham Science Centre Abingdon United Kingdom of Great Britain and Northern Ireland;

    CCFE Culham Science Centre Abingdon United Kingdom of Great Britain and Northern Ireland;

    Max-Planck-Institute for Plasmaphysics EURATOM Association Garching Germany;

    CEA IRFM F-13108 Saint-Paul-lez-Durance France Eindhoven University of Technology Eindhoven Netherlands;

    CCFE Culham Science Centre Abingdon United Kingdom of Great Britain and Northern Ireland;

    CCFE Culham Science Centre Abingdon United Kingdom of Great Britain and Northern Ireland;

    York Plasma Institute Department of Physics University of York York United Kingdom of Great Britain and Northern Ireland CCFE Culham Science Centre Abingdon United Kingdom of Great Britain and Northern Ireland;

    CCFE Culham Science Centre Abingdon United Kingdom of Great Britain and Northern Ireland;

    York Plasma Institute Department of Physics University of York York United Kingdom of Great Britain and Northern Ireland CCFE Culham Science Centre Abingdon United Kingdom of Great Britain and Northern Ireland;

  • 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

    ELM; MAST-U super-X; non-linear MHD; ELM burn-through; JOREK; simulations;

    机译:榆树;mast-u super-x;非线性mhd;榆树烧伤;jorek;模拟;

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