[1] Fisch N J. Confining a tokamak plasma with rf-driven currents [J]. Phys. Rev. Lett., 1978, 41(13): 873.
[2] Yamamoto T, Imai T, Shimada M, et al. Experimental observation of the rf-driven current by the lower-hybrid wave in a tokamak [J]. Phys. Rev. Lett., 1980, 45(9): 716.
[3] Peysson Y. Higher power lower hybrid wave current drive experiments in the tore supra tokamak [J]. Nucl. Fusion, 2001, 41(11): 1703.
[4] Wan B N. Overview of the latest HT-7 experiments [J]. Nucl. Fusion, 2005, 45(10): s132.
[5] Ide S, the JT-60U Team. Overview of JT-60U progress towards stead-state advanced tokamak [J]. Nucl. Fusion, 2005, 45 (10): s48.
[6] 焦一鸣. D形截面环流器中的磁面及LHCD的研究 [J].核聚变与等离子体物理, 1994, 14(4): 9.
[7] Bonoli P T, Englade R C. Simulation model for lower hybrid current drive [J]. Phys. Fluids, 1986, 29 (9): 2937.
[8] 丁伯江, 匡光力. 低杂波电流驱动的数值模拟 [J]. 物理学报, 2002, 51(11): 2556.
[9] Wu S T, the EAST Team. An overview of the EAST project [J]. Fusion Engineering and Design, 2007, 82 (5-14): 463.
[10] Shouri, M, Shkarofsky I. A fast 2D Fokker-Planck solver with synergetic effects [J]. Comp. Phys. Commun., 1994, 82 (7): 287.
[11] Bonoli P T. Numerical modeling of lower hybrid RF heating and current drive experiments in the Alcator C tokamak [J]. Nucl. Fusion, 1988, 28(6): 991.
[12] Shoucri M, Shkarofsky I. A Fokker-Planck code for the numerical solution of the plasma heating and the current drive problems with synergetic effects [J]. Comput. Phys. Commun., 1993, 78(6): 199.
[13] 吴斌, 张澄. HT-7U 等离子体位形与电流控制的数值模拟 [J]. 核聚变与等离子体物理, 2002, 22(4): 193.
[14] Jardin S C, Bell M G, Pomphrey N. TSC simulation of ohmic discharges in TFTR [J]. Nucl. Fusion, 1993, 33(3): 371. |