Simulation of a discharge for the NCSX stellarator

被引:7
作者
Lazarus, EA
Zarnstorff, MC
Hudson, SR
Ku, LP
McCune, DC
Mikkelsen, DR
Monticello, DA
Pomphrey, E
Reiman, AH
机构
[1] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA
[2] Princeton Plasma Phys Lab, Princeton, NJ 08544 USA
关键词
NCSX; plasma control; MHD stability;
D O I
10.13182/FST04-A557
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
It is demonstrated that there exists a plausible evolution of the discharge from the vacuum state to the desired high beta state with the self-consistent bootstrap current profile. The discharge evolution preserves stability and has adequate quasi axisymmetry along this trajectory. The study takes advantage of the quasi-axisymmetric nature of the device to model the evolution of flux and energy in two dimensions. The plasma confinement is modeled to be consistent with empirical scaling. The ohmic circuit, the plasma density, and the timing of the neutral beam heating control the poloidal flux evolution. The resulting pressure and current density profiles are then used in a three-dimensional optimization to find the desired sequence of equilibria. In order to obtain this sequence, active control of the helical and poloidal fields is required. These results are consistent with the planned power systems for the magnets.
引用
收藏
页码:209 / 214
页数:6
相关论文
共 10 条
[1]  
Hawryluk R. J., 1980, PHYSICS PLASMAS CLOS, V1, P19
[2]   STEEPEST-DESCENT MOMENT METHOD FOR 3-DIMENSIONAL MAGNETOHYDRODYNAMIC EQUILIBRIA [J].
HIRSHMAN, SP ;
WHITSON, JC .
PHYSICS OF FLUIDS, 1983, 26 (12) :3553-3568
[3]   Physics of compact stellarators [J].
Hirshman, SP ;
Spong, DA ;
Whitson, JC ;
Nelson, B ;
Batchelor, DB ;
Lyon, JF ;
Sanchez, R ;
Brooks, A ;
Fu, GY ;
Goldston, RJ ;
Ku, LP ;
Monticello, DA ;
Mynick, H ;
Neilson, GH ;
Pomphrey, N ;
Redi, M ;
Reiersen, W ;
Reiman, AH ;
Schmidt, J ;
White, R ;
Zarnstorff, MC ;
Miner, WH ;
Valanju, RM ;
Boozer, A .
PHYSICS OF PLASMAS, 1999, 6 (05) :1858-1864
[4]   Constructing integrable high-pressure full-current free-boundary stellarator magnetohydrodynamic equilibrium solutions [J].
Hudson, SR ;
Monticello, DA ;
Reiman, AH ;
Strickler, DJ ;
Hirshman, SP ;
Ku, LP ;
Lazarus, E ;
Brooks, A ;
Zarnstorff, MC ;
Boozer, AH ;
Fu, GY ;
Neilson, GH .
NUCLEAR FUSION, 2003, 43 (10) :1040-1046
[5]   ITER L mode confinement database [J].
Kaye, SM .
NUCLEAR FUSION, 1997, 37 (09) :1303-1328
[6]  
LAZARUS EA, IN PRESS FUSION SCI
[7]   PROGRESS IN TOKAMAK RESEARCH AT MIT [J].
PARKER, RR ;
GREENWALD, M ;
LUCKHARDT, SC ;
MARMAR, ES ;
PORKOLAB, M ;
WOLFE, SM .
NUCLEAR FUSION, 1985, 25 (09) :1127-1136
[8]   Recent advances in the design of quasiaxisymmetric stellarator plasma configurations [J].
Reiman, A ;
Ku, L ;
Monticello, D ;
Hirshman, S ;
Hudson, S ;
Kessel, C ;
Lazarus, E ;
Mikkelsen, D ;
Zarnstorff, M ;
Berry, LA ;
Boozer, A ;
Brooks, A ;
Cooper, WA ;
Drevlak, M ;
Fredrickson, E ;
Fu, G ;
Goldston, R ;
Hatcher, R ;
Isaev, M ;
Jun, C ;
Knowlton, S ;
Lewandowski, J ;
Lin, Z ;
Lyon, JF ;
Merkel, P ;
Mikhailov, M ;
Miner, W ;
Mynick, H ;
Neilson, G ;
Nelson, BE ;
Nührenberg, C ;
Pomphrey, N ;
Redi, M ;
Reiersen, W ;
Rutherford, P ;
Sanchez, R ;
Schmidt, J ;
Spong, D ;
Strickler, D ;
Subbotin, A ;
Valanju, P ;
White, R .
PHYSICS OF PLASMAS, 2001, 8 (05) :2083-2094
[9]   CALCULATION OF 3-DIMENSIONAL MHD EQUILIBRIA WITH ISLANDS AND STOCHASTIC REGIONS [J].
REIMAN, A ;
GREENSIDE, H .
COMPUTER PHYSICS COMMUNICATIONS, 1986, 43 (01) :157-167
[10]   Physics of the compact advanced stellarator NCSX [J].
Zarnstorff, MC ;
Berry, LA ;
Brooks, A ;
Fredrickson, E ;
Fu, GY ;
Hirshman, S ;
Hudson, S ;
Ku, LP ;
Lazarus, E ;
Mikkelsen, D ;
Monticello, D ;
Neilson, GH ;
Pomphrey, N ;
Reiman, A ;
Spong, D ;
Strickler, D ;
Boozer, A ;
Cooper, WA ;
Goldston, R ;
Hatcher, R ;
Isaev, M ;
Kessel, C ;
Lewandowski, J ;
Lyon, JF ;
Merkel, P ;
Mynick, H ;
Nelson, BE ;
Nuehrenberg, C ;
Redi, M ;
Reiersen, W ;
Rutherford, P ;
Sanchez, R ;
Schmidt, J ;
White, RB .
PLASMA PHYSICS AND CONTROLLED FUSION, 2001, 43 :A237-A249