New method to analyze internal disruptions with tomographic reconstructions

被引:6
作者
Tanzi, CP [1 ]
deBlank, HJ [1 ]
机构
[1] EURATOM, MAX PLANCK INST PLASMAPHYS, IPP ASSOC, D-85740 GARCHING, GERMANY
关键词
D O I
10.1063/1.872164
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Sawtooth crashes have been investigated on the Rijnhuizen Tokamak Project (RTP) [N. J. Lopes Cardozo ed al., Proceedings of the 14th international Conference on Plasma Physics and Controlled Nuclear Fusion Research, Wurzburg, 1992 (International Atomic Energy Agency, Vienna, 1993), Vol. 1, p. 271]. Internal disruptions in tokamak plasmas often exhibit an m = 1 poloidal mode structure prior to the collapse which can be clearly identified by means of multicamera soft x-ray diagnostics. In this paper tomographic reconstructions of such m = 1 modes are analyzed with a new method, based on magnetohydrodynamic (MHD) invariants computed from the two-dimensional emissivity profiles, which quantifies the amount of profile flattening not only after the crash but also during the precursor oscillations. The results are interpreted by comparing them with two models which simulate the measurements of the m = 1 redistribution of soft x-ray emissivity prior to the sawtooth crash. One model is based on the magnetic reconnection model of Kadomtsev. The other involves ideal MHD motion only. La cases where differences in magnetic topology between the two models cannot be seen in the tomograms, the analysis of profile flattening has an advantage. The analysis shows that in RTP the clearly observed m = 1 displacement of some sawteeth requires the presence of convective ideal MHD motion, whereas other precursors are: consistent with magnetic reconnection of up to 75% of the magnetic flux within the q = 1 surface. The possibility of ideal interchange combined with enhanced cross-field transport is not excluded. (C) 1997 American Institute of Physics.
引用
收藏
页码:696 / 708
页数:13
相关论文
共 29 条
[1]   MAGNETIC RECONNECTION AND M = 1 OSCILLATIONS IN CURRENT-CARRYING PLASMAS [J].
ARA, G ;
BASU, B ;
COPPI, B ;
LAVAL, G ;
ROSENBLUTH, MN ;
WADDELL, BV .
ANNALS OF PHYSICS, 1978, 112 (02) :443-476
[2]   DYNAMICS OF THE SAWTOOTH COLLAPSE IN TOKAMAK PLASMAS [J].
BISKAMP, D ;
DRAKE, JF .
PHYSICAL REVIEW LETTERS, 1994, 73 (07) :971-974
[3]   INTERNAL KINK MODES IN TOROIDAL PLASMAS WITH CIRCULAR CROSS-SECTIONS [J].
BUSSAC, MN ;
PELLAT, R ;
EDERY, D ;
SOULE, JL .
PHYSICAL REVIEW LETTERS, 1975, 35 (24) :1638-1641
[4]  
CAMPBELL DJ, 1985, CONTROLLED FUSIO F 1, V9, P130
[5]  
CARDOZO NJL, 1992, PLASMA PHYS CONTROLL, V1, P271
[6]   SOFT-X-RAY TOMOGRAPHY DIAGNOSTIC AT THE RTP TOKAMAK [J].
DACRUZ, DF ;
DONNE, AHJ .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1994, 65 (07) :2295-2305
[7]   RAPID COLLAPSE OF A PLASMA SAWTOOTH OSCILLATION IN THE JET TOKAMAK [J].
EDWARDS, AW ;
CAMPBELL, DJ ;
ENGELHARDT, WW ;
FAHRBACH, HU ;
GILL, RD ;
GRANETZ, RS ;
TSUJI, S ;
TUBBING, BJD ;
WELLER, A ;
WESSON, J ;
ZASCHE, D .
PHYSICAL REVIEW LETTERS, 1986, 57 (02) :210-213
[8]  
FREDRICKSON ED, 1991, PLASMA PHYS CONTROLL, V1, P559
[9]   CALCULATION OF THE POSTCRASH STATE AND 1-1/2-D SIMULATION OF SAWTOOTH CYCLES [J].
GIMBLETT, CG ;
HASTIE, RJ .
PLASMA PHYSICS AND CONTROLLED FUSION, 1994, 36 (09) :1439-1455
[10]   SOFT-X-RAY TOMOGRAPHY ON ALCATOR-C [J].
GRANETZ, RS ;
CAMACHO, JF .
NUCLEAR FUSION, 1985, 25 (06) :727-732