Ion heat pinch due to the magnetic drift resonance with the ion temperature gradient instability in a rotating plasma
Zhang, Debing1; Xu, Yingfeng2; Wang, Shaojie1
刊名PHYSICS OF PLASMAS
2017-03-01
卷号24期号:3页码:1-5
DOI10.1063/1.4977808
文献子类Article
英文摘要The ion heat pinch due to the magnetic drift resonance with the ion temperature gradient instability is investigated by using the Lie-transform method. In a tokamak plasma with an equilibrium parallel flow, the total heat flux is found to direct inward with a strong flow shear. The proposed heat pinch can provide possible explanations for some experimental observations. Published by AIP Publishing.
WOS关键词MODE TURBULENCE ; TRANSPORT ; ELECTRON ; CONFINEMENT ; SIMULATION ; TOKAMAK ; DRIVEN ; SHEAR ; TFTR
WOS研究方向Physics
语种英语
WOS记录号WOS:000397872500001
资助机构National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National Natural Science Foundation of China(11375196 ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; National ITER program of China(2014GB113000) ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11405174 ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; 11675176) ; 11675176)
内容类型期刊论文
源URL[http://ir.hfcas.ac.cn:8080/handle/334002/31780]  
专题合肥物质科学研究院_中科院等离子体物理研究所
作者单位1.Univ Sci & Technol China, Dept Modern Phys, Hefei 230026, Peoples R China
2.Chinese Acad Sci, Inst Plasma Phys, Hefei 230031, Peoples R China
推荐引用方式
GB/T 7714
Zhang, Debing,Xu, Yingfeng,Wang, Shaojie. Ion heat pinch due to the magnetic drift resonance with the ion temperature gradient instability in a rotating plasma[J]. PHYSICS OF PLASMAS,2017,24(3):1-5.
APA Zhang, Debing,Xu, Yingfeng,&Wang, Shaojie.(2017).Ion heat pinch due to the magnetic drift resonance with the ion temperature gradient instability in a rotating plasma.PHYSICS OF PLASMAS,24(3),1-5.
MLA Zhang, Debing,et al."Ion heat pinch due to the magnetic drift resonance with the ion temperature gradient instability in a rotating plasma".PHYSICS OF PLASMAS 24.3(2017):1-5.
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