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Demonstration of low recycling on a spherical torus with lithium plasma facing components.

机译:在面向锂等离子体的组件的球形圆环上显示出低回收率。

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摘要

Plasma facing components (PFCs) play an important role in the performance of fusion research devices. In order to investigate the effects of liquid lithium plasma facing components on plasma performance, the Current Drive Experiment - Upgrade (CDX-U) spherical torus installed a toroidal liquid lithium tray limiter and an electron beam lithium evaporation system.; Measurements of the effective particle confinement time, t*p , were performed by using transient gas puffing and observing the time dependence of the plasma density with microwave interferometry. A significant drop in t*p was observed in the discharges with liquid lithium PFCs, which is consistent with increased particle pump-put. Spectroscopic measurements also support an overall decrease in the particle flux to the plasma. In order to look at the global particle balance in the CDX-U discharges with liquid lithium PFCs, modeling of the plasma discharges with DEGAS2, a neutral particle transport code, has been performed. Utilizing the available spectroscopic data, this modeling allows a calculation of a global recycling coefficient ( R) for both standard discharges and ones with liquid lithium PFCs. The modeling shows a significant reduction in recycling, with R = 0.75 in the liquid lithium case. An analysis of the impact of light reflections on the spectroscopic measurements was also performed.
机译:面向等离子体的组件(PFC)在聚变研究设备的性能中起着重要作用。为了研究液态锂等离子体面对部件对等离子体性能的影响,电流驱动实验-升级(CDX-U)球形圆环安装了环形液态锂托盘限制器和电子束锂蒸发系统。有效颗粒限制时间t * p的测量是通过使用瞬态气体吹气并用微波干涉仪观察等离子体密度与时间的关系来进行的。在使用液态锂PFC的放电中观察到t * p显着下降,这与增加的颗粒泵流量一致。光谱测量还支持总体上减少了到达等离子体的粒子通量。为了查看使用液态锂PFC的CDX-U放电中的总体颗粒平衡,已使用DEGAS2(中性颗粒传输代码)对等离子体放电进行了建模。利用可用的光谱数据,该模型可以计算标准放电和液态锂PFC放电的全局回收系数(R)。该模型显示回收率显着降低,在液态锂的情况下R = 0.75。还对光反射对光谱测量的影响进行了分析。

著录项

  • 作者

    Gray, Timothy Garrett.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 151 p.
  • 总页数 151
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

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