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Preliminary results and lessons learned from upgrading the Tore Supra actively cooled plasma facing components (CIEL project)

机译:升级Tore Supra主动冷却等离子面板组件的初步结果和经验教训(CIEL项目)

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摘要

The design and fabrication of large areas of actively cooled plasma facing components (PFCs) is a major issue for the next generation of tokamaks. Tore Supra is currently the only large fusion device which has implemented actively cooled PFCs from the beginning of operation in 1988, while maintaining continuous development activities to improve their performances and reliability. High heat flux PFCs based on copper alloy heat sink structures have been developed in order to enable a large increase of power extraction capacity. The result is an actively cooled high heat flux 'finger' element (capable of removing up to 10 MW/m~2 in normal steady state operation). It has been used first for the RF antennas edge limiters (200 fingers) and then for the toroidal pump limiter (TPL), which is the main part of the Tore Supra upgrade of in-vessel components (CIEL project). The active part of the TPL structure is made of ≈600 actively cooled elements. Problems appeared during series manufacturing of such a large number of high heat flux elements that finally led to the development of a tile attachment repair process in order to allow the achievement of the manufacturing. The whole limiter was installed inside the Tore Supra inner vessel at the beginning of 2002. Very promising first results have been recently obtained (600 MJ of injected and removed power during 3 min 30 s discharge). Monitoring and technical lessons for future realisations from these more-than-10-year developments, in particular for ITER, are discussed.
机译:大面积的主动冷却等离子体组件(PFC)的设计和制造是下一代托卡马克的主要问题。自1988年开始运营以来,Tore Supra是目前唯一采用主动冷却PFC的大型聚变设备,同时保持持续的开发活动以提高其性能和可靠性。已经开发了基于铜合金散热片结构的高热通量PFC,以使功率提取能力大大提高。结果是主动冷却的高热通量“指状”元件(在正常的稳态运行中能够去除高达10 MW / m〜2的热量)。它首先用于RF天线边缘限制器(200个手指),然后用于环形泵限制器(TPL),这是Tore Supra升级船上组件的主要部分(CIEL项目)。 TPL结构的有源部分由≈600个有源冷却元件制成。在如此大量的高热通量元件的批量制造期间出现了问题,这些问题最终导致了瓷砖附着修复工艺的发展,从而实现了制造。整个限制器于2002年初安装在Tore Supra内部容器内。最近获得了非常有希望的初步结果(在放电过程中3分钟30 s注入和移除功率600 MJ)。讨论了这些十多年来的发展成果,尤其是对国际热核实验堆(ITER)的监测和技术课程,以实现未来的实现。

著录项

  • 来源
    《Fusion Engineering and Design》 |2003年第2003期|p.59-67|共9页
  • 作者

    J.J. Cordier;

  • 作者单位

    Association EURATOM-CEA, DSM/DRFC/STEP, CEA/Cadarache, F-13108 Saint Paul lez Durance, France;

  • 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 原子能技术;
  • 关键词

    limiter; tore supra; tile;

    机译:限制器;撕毁;瓷砖;

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