COMPACT STEADY-STATE TOKAMAKS

被引:1
|
作者
ROBINSON, DC
机构
来源
FUSION TECHNOLOGY | 1995年 / 27卷
关键词
D O I
10.13182/FST95-A11947059
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
The small aspect ratio tokamak combines the attractive features of the tokamak, reverse field pinch and spheromak to produce a compact, stable, high-beta configuration with low external fields. Experiments on the Small Tight Aspect Ratio Tokamak (START) at Culham have demonstrated the production of stable, high temperature (T-e less than or equal to 1keV), naturally elongated plasmas with good confinement, at aspect ratios down to 1.25. These plasmas are, so far, free from current-terminating disruptions and exhibit a natural divertor action. Theoretical studies have demonstrated robust stability at high beta (> 30%) and self-consistent steady-state equilibria using pressure and beam driven currents. Such steady-state solutions exist for devices at the Mega Amp level, compact component test facilities and fusion power plants of modest size (R(o) similar to 2-3m).
引用
收藏
页码:144 / 149
页数:6
相关论文
共 50 条
  • [1] Steady-state operation in compact tokamaks with copper coils
    Kuteev, B. V.
    Azizov, E. A.
    Bykov, A. S.
    Dnestrovsky, A. Yu.
    Dokuka, V. N.
    Gladush, G. G.
    Golikov, A. A.
    Goncharov, P. R.
    Gryaznevich, M.
    Gurevich, M. I.
    Ivanov, A. A.
    Khairutdinov, R. R.
    Khripunov, V. I.
    Kingham, D.
    Klishchenko, A. V.
    Kurnaev, V. A.
    Lukash, V. E.
    Medvedev, S. Yu.
    Savrukhin, P. V.
    Sergeev, V. Yu.
    Shpansky, Yu. S.
    Sykes, A.
    Voss, G.
    Zhirkin, A. V.
    [J]. NUCLEAR FUSION, 2011, 51 (07)
  • [2] STEADY-STATE COMPACT TORUS
    QUIMBY, DC
    STEINHAUER, L
    [J]. BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1980, 25 (08): : 882 - 883
  • [3] Neoclassical transport in tokamaks with steady-state magnetic islands
    Kovrizhnykh, LM
    [J]. PLASMA PHYSICS REPORTS, 1998, 24 (07) : 533 - 540
  • [4] Recent developments in steady-state physics and technology of tokamaks in Cadarache
    Jacquinot, J
    [J]. NUCLEAR FUSION, 2003, 43 (12) : 1583 - 1599
  • [5] A review of internal transport barrier physics for steady-state operation of tokamaks
    Connor, JW
    Fukuda, T
    Garbet, X
    Gormezano, C
    Mukhovatov, V
    Wakatani, M
    [J]. NUCLEAR FUSION, 2004, 44 (04) : R1 - R49
  • [6] POWER REQUIREMENTS FOR LOWER HYBRID-DRIVEN STEADY-STATE TOKAMAKS
    EHST, D
    ABDOU, M
    [J]. TRANSACTIONS OF THE AMERICAN NUCLEAR SOCIETY, 1980, 34 (JUN): : 41 - 42
  • [7] APPLICATION OF INTENSE RELATIVISTIC ELECTRON-BEAMS TO STEADY-STATE TOKAMAKS
    BAILEY, V
    BENFORD, J
    COOPER, R
    HELAVA, H
    [J]. BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1979, 24 (08): : 1030 - 1030
  • [8] Fast particles in a steady-state compact FNS and compact ST reactor
    Gryaznevich, M. P.
    Nicolai, A.
    Buxton, P.
    [J]. NUCLEAR FUSION, 2014, 54 (10)
  • [9] OPTIONS FOR A STEADY-STATE COMPACT FUSION NEUTRON SOURCE
    Gryaznevich, M. P.
    Sykes, A.
    Kingham, D.
    McNamara, B.
    Voss, G.
    Kuteev, B. V.
    Dnestrovskii, A. Yu.
    Golikov, A. A.
    [J]. FUSION SCIENCE AND TECHNOLOGY, 2012, 61 (1T) : 89 - 94
  • [10] Intrinsically steady state tokamaks
    Shaing, KC
    Aydemir, AY
    Hazeltine, RD
    Houlberg, WA
    Zarnstorff, MC
    [J]. NUCLEAR FUSION, 1999, 39 (11Y) : 2103 - 2105