...
首页> 外文期刊>Nuclear fusion >Edge pedestal control in quiescent H-mode discharges in DIII-D using co-plus counter-neutral beam injection
【24h】

Edge pedestal control in quiescent H-mode discharges in DIII-D using co-plus counter-neutral beam injection

机译:使用共正反中性束注入在DIII-D中静态H模式放电的边缘基座控制

获取原文
获取原文并翻译 | 示例
           

摘要

We have made two significant discoveries in our recent studies of quiescent H-mode (QH-mode) plasmas in DIII-D. First, we have found that we can control the edge pedestal density and pressure by altering the edge particle transport through changes in the edge toroidal rotation. This allows us to adjust the edge operating point to be close to, but below the ELM stability boundary, maintaining the ELM-free state while allowing up to a factor of two increase in edge pressure. The ELM boundary is significantly higher in more strongly shaped plasmas, which broadens the operating space available for QH-mode and leads to improved core performance. Second, for the first time on any tokamak, we have created QH-mode plasmas with strong edge co-rotation; previous QH-modes in all tokamaks had edge counter-rotation. This result demonstrates that counter-NBI and edge-counter rotation are not essential conditions for QH-mode. Both these investigations benefited from the edge stability predictions based on peeling-ballooning mode theory. The broadening of the ELM-stable region with plasma shaping is predicted by that theory. The theory has also been extended to provide a model for the edge harmonic oscillation that enhances edge transport in the QH-mode. Many of the features of that theory agree with the experimental results reported either previously or in this paper. One notable example is the prediction that co-rotating QH-mode is possible provided sufficient shear in the edge rotation can be created.
机译:在我们最近对DIII-D中的静态H模式(QH模式)等离子体进行的研究中,我们取得了两个重要发现。首先,我们发现可以通过改变边缘环形旋转来改变边缘粒子的传输,从而控制边缘基座的密度和压力。这使我们可以将边缘操作点调整为接近但低于ELM稳定性边界,从而保持无ELM状态,同时允许边缘压力最多增加两倍。在形状更强的等离子体中,ELM边界明显更高,这扩大了QH模式可用的工作空间,并改善了磁芯性能。其次,我们首次在任何托卡马克上创建了具有强边同向旋转的QH模式等离子体。以前所有托卡马克人的QH模式都具有边缘反向旋转。该结果表明,反向NBI和边缘反向旋转不是QH模式的必要条件。这些研究都受益于基于剥离-气球模式理论的边缘稳定性预测。该理论预言了具有等离子体整形的ELM稳定区域的扩展。该理论也得到了扩展,为边缘谐波振荡提供了一个模型,该模型增强了QH模式下的边缘传输。该理论的许多特征与先前或本文报道的实验结果一致。一个值得注意的例子是预测,只要可以在边缘旋转中产生足够的剪切力,就可以实现同向旋转QH模式。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号