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Nstx plasma operation with a Liquid Lithium Divertor

机译:使用液体锂分流器的Nstx等离子操作

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摘要

Nstx 2010 experiments were conducted using a molybdenum Liquid Lithium Divertor (LLD) surface installed on the outer part of the lower divertor. This tested the effectiveness of maintaining the deuterium retention properties of a static liquid lithium surface when refreshed by lithium evaporation as an approximation to a flowing liquid lithium surface. The LLD molybdenum front face has a 45% porosity to provide sufficient wetting to spread 37 g of lithium, and to retain it in the presence of magnetic forces. Lithium Evaporators were used to deposit lithium on the LLD surface. At the beginning of discharges, the LLD lithium surface ranged from solid to liquefied depending on the amount of applied and plasma heating. Noteworthy improvements in plasma performance were obtained similar to those obtained previously with lithiated graphite, e.g., ELM-free, quiescent edge, H-modes. During these experiments with the plasma outer strike point on the LLD, the rate of deuterium retention in the LLD, as indicated by the fueling needed to achieve and maintain stable plasma conditions, was the about the same as that for solid lithium coatings on the graphite prior to the installation of the LLD, i.e., about two times that of no-lithium conditions. The role of lithium impurities in this result is discussed. Following the 2010 experimental campaign, inspection of the LLD found mechanical damage to the plate supports, and other hardware resulting from forces following plasma current disruptions. The LLD was removed, upgraded, and reinstalled. A row of molybdenum tiles was installed inboard of the LLD for 2011 experiments with both inner and outer strike points on lithiated molybdenum to allow investigation of lithium plasma facing issues encountered in the first testing of the LLD.
机译:Nstx 2010实验是使用安装在下偏滤器外部的钼液锂分流器(LLD)表面进行的。这测试了当通过锂蒸发刷新(近似于流动的液态锂表面)时保持静态液态锂表面的氘保持性能的有效性。 LLD钼正面的孔隙率为45%,可提供足够的润湿性以散布37克锂,并在存在磁力的情况下将其保留。锂蒸发器用于在LLD表面沉积锂。在放电开始时,LLD锂的表面范围从固体到液化,这取决于施加的量和等离子体加热的程度。与先前使用锂化石墨获得的等离子体性能类似,例如在无ELM,静态边缘,H模式下获得的等离子体性能显着提高。在这些实验中,当LLD上有等离子体外部撞击点时,LLD中氘的保留率(达到和维持稳定的等离子体条件所需的燃料)与石墨上的固态锂涂层大致相同。在安装LLD之前,大约是无锂条件的两倍。讨论了锂杂质在该结果中的作用。在2010年的实验性活动之后,对LLD的检查发现了等离子电流中断后的力导致的板支架和其他硬件的机械损坏。 LLD已删除,升级并重新安装。在2011年的LLD内侧安装了一排钼砖,在锂化钼上有内部和外部触碰点,以便调查LLD首次测试中遇到的锂等离子体面临的问题。

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  • 来源
    《Fusion Engineering and Design》 |2012年第10期|p.1724-1731|共8页
  • 作者单位

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Purdue University. West Lafayette. IN 47907. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Purdue University. West Lafayette. IN 47907. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA;

    Oak Ridge National Laboratory, Oak Ridge, TN 37831, USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Sandia National Laboratories, Albuquerque, NM 87185. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    University of Washington, Seattle, WA 98195. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Columbia University, New York. NY 10027, USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Lawrence Livermore National Laboratory, Livermore, CA 94551, USA;

    Purdue University. West Lafayette. IN 47907. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

    Princeton Plasma Physics Laboratory. Princeton, NJ 08543. USA;

  • 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

    lithium; lithium divertors; lithium plasma facing components; lithium impurities; divertors;

    机译:锂;锂分流器;锂等离子体面对组件;锂杂质;转向器;
  • 入库时间 2022-08-18 00:39:15

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