Interplay between intrinsic plasma rotation and magnetic island evolution in disruptive discharges
- 作者: Ronchi G.1, Severo J.H.1, Salzedas F.2,3, Galvão R.M.1, Sanada E.K.1
- 
							隶属关系: 
							- Instituto de Física
- Faculdade de Engenharia
- Instituto de Plasmas e Fusão Nuclear, Instituto Superior Técnico
 
- 期: 卷 42, 编号 5 (2016)
- 页面: 465-471
- 栏目: Tokamaks
- URL: https://journal-vniispk.ru/1063-780X/article/view/185736
- DOI: https://doi.org/10.1134/S1063780X16050159
- ID: 185736
如何引用文章
详细
The behavior of the intrinsic toroidal rotation of the plasma column during the growth and eventual saturation of m/n = 2/1 magnetic islands, triggered by programmed density rise, has been carefully investigated in disruptive discharges in TCABR. The results show that, as the island starts to grow and rotate at a speed larger than that of the plasma column, the angular frequency of the intrinsic toroidal rotation increases and that of the island decreases, following the expectation of synchronization. As the island saturates at a large size, just before a major disruption, the angular speed of the intrinsic rotation decreases quite rapidly, even though the island keeps still rotating at a reduced speed. This decrease of the toroidal rotation is quite reproducible and can be considered as an indicative of disruption.
作者简介
G. Ronchi
Instituto de Física
														Email: rgalvao@if.usp.br
				                					                																			                												                	巴西, 							São Paulo						
J. Severo
Instituto de Física
														Email: rgalvao@if.usp.br
				                					                																			                												                	巴西, 							São Paulo						
F. Salzedas
Faculdade de Engenharia; Instituto de Plasmas e Fusão Nuclear, Instituto Superior Técnico
														Email: rgalvao@if.usp.br
				                					                																			                												                	葡萄牙, 							Porto; Lisboa						
R. Galvão
Instituto de Física
							编辑信件的主要联系方式.
							Email: rgalvao@if.usp.br
				                					                																			                												                	巴西, 							São Paulo						
E. Sanada
Instituto de Física
														Email: rgalvao@if.usp.br
				                					                																			                												                	巴西, 							São Paulo						
补充文件
 
				
			 
						 
						 
					 
						 
						 
				 
  
  
  
  
  电邮这篇文章
			电邮这篇文章  开放存取
		                                开放存取 ##reader.subscriptionAccessGranted##
						##reader.subscriptionAccessGranted## 订阅存取
		                                		                                        订阅存取
		                                					