Predictive transport simulations of real-time profile control in JET advanced tokamak plasmas

被引:18
|
作者
Tala, T
Laborde, L
Mazon, D
Moreau, D
Corrigan, G
Crisanti, F
Garbet, X
Heading, D
Joffrin, E
Litaudon, X
Parail, V
Salmi, A
机构
[1] Assoc Euratom Tekes, VTT Proc, FIN-02044 Espoo, Finland
[2] EURATOM, CEA, DSM, DRFC Cadarache, St Paul Les Durance, France
[3] EFDA, JET Close Support Unit, Culham Sci Ctr, Abingdon OX14 3DB, Oxon, England
[4] UKAEA Euratom Fus Assoc, Culham Sci Ctr, Abingdon OX14 3DB, Oxon, England
[5] EURATOM, ENEA Fus, I-00044 Frascati, Italy
[6] Aalto Univ, Assoc EURATOM Tekes, FIN-02015 Helsinki, Finland
关键词
D O I
10.1088/0029-5515/45/9/001
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
Predictive, time-dependent transport simulations with a semi-empirical plasma model have been used in closed-loop simulations to control the q-profile and the strength and location of the internal transport barrier (ITB). Five transport equations (T-e, T-i, q, n(e), v(Phi)) are solved, and the power levels of lower hybrid current drive, NBI and ICRH are calculated in a feedback loop determined by the feedback controller matrix. The real-time control (RTC) technique and algorithms used in the transport simulations are identical to those implemented and used in JET experiments (Laborde L. et al 2005 Plasma Phys. Control. Fusion 47 155 and Moreau D. et al 2003 Nucl. Fusion 43 870). The closed-loop simulations with RTC demonstrate that varieties of q-profiles and pressure profiles in the ITB can be achieved and controlled simultaneously. The simulations also showed that with the same RTC technique as used in JET experiments, it is possible to sustain the q-profiles and pressure profiles close to their set-point profiles for longer than the current diffusion time. In addition, the importance of being able to handle the multiple time scales to control the location and strength of the ITB is pointed out. Several future improvements and perspectives of the RTC scheme are presented.
引用
收藏
页码:1027 / 1038
页数:12
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