期刊文献+

The Impact of Beam Deposition on Bootstrap Current of Fast Ion Produced by Neutral Beam Tangential Injection

The Impact of Beam Deposition on Bootstrap Current of Fast Ion Produced by Neutral Beam Tangential Injection
原文传递
导出
摘要 The density profile of fast ions arising from a tangentially injected diffuse neutral beam in tokamak plasma is calculated. The effects of mean free paths and beam tangency radius on the density profile are discussed under typical HL-2A plasmas parameters. The results show that the profile of fast ions is strongly peaked at the center of the plasma when the mean free path at the maximum deuteron density is larger than the minor radius, while the peak value decreases when the mean free path at the maximum deuteron density is larger than twice that of the minor radius due to the beam transmission loss. Moreover~ the bootstrap current of fast ions for various mean free paths at the maximum deuteron density is calculated and its density is proved to be closely related to the deposition of the neutral beam. With the electron return current considered, the net current density obviously decreases. Meanwhile, the peak central fast ion density increases when the beam tangency radius approaches the major radius, and the net bootstrap current increases rapidly with the increasing beam tangency radius. The density profile of fast ions arising from a tangentially injected diffuse neutral beam in tokamak plasma is calculated. The effects of mean free paths and beam tangency radius on the density profile are discussed under typical HL-2A plasmas parameters. The results show that the profile of fast ions is strongly peaked at the center of the plasma when the mean free path at the maximum deuteron density is larger than the minor radius, while the peak value decreases when the mean free path at the maximum deuteron density is larger than twice that of the minor radius due to the beam transmission loss. Moreover~ the bootstrap current of fast ions for various mean free paths at the maximum deuteron density is calculated and its density is proved to be closely related to the deposition of the neutral beam. With the electron return current considered, the net current density obviously decreases. Meanwhile, the peak central fast ion density increases when the beam tangency radius approaches the major radius, and the net bootstrap current increases rapidly with the increasing beam tangency radius.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第8期107-110,共4页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No 11375085 the Construct Program of Fusion and Plasma Physics Innovation Team in Hunan Province under Grant No NHXTD03 the Hengyang Science and Technology Funds under Grant No 2013kj24 the Construct Program of the Key Discipline in Hunan Province
  • 相关文献

参考文献21

  • 1Hirshman S P and Sigmar D J 1981 Nucl. Fusion 21 1079.
  • 2Shaing K C, Yokoyama M, Wakatani M and Hsu C T 1996 Phys. Plasmas 3 965.
  • 3Sauter, Angioni C and Lin-Liu Y R 1999 Phys. Plasmas 6 2834.
  • 4Hirshman S P 1988 Phys. Fluids 31 3150.
  • 5Shi B R 2004 Chin. Phys. B 13 2097.
  • 6Andrade M C R and Ludwig (I O 1997 Plasma Phys. Con- trol. Fusion 39 1041.
  • 7Murakami M. Arunasalam V. Bell J D et al 1986 PlasmaPhys. Control. Fusion 28 17.
  • 8Asai T, Suzuki Y, Yoneda T et al 2000 Phys. Plasmas 7 2294.
  • 9Wang J F, Wu B and Hu C D 2010 Plasma Sci. Technol. 12 289.
  • 10Liu Y, Isobe M, Peng X D et al 2012 Nucl. Fusion 52 074008.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部