Transport barriers in non-axisymmetric magnetic fields

被引:7
|
作者
Ida, K. [1 ]
机构
[1] Natl Inst Nat Sci, Natl Inst Fus Sci, Toki, Gifu 5095292, Japan
关键词
D O I
10.1088/1742-6596/123/1/012004
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
A transport barrier which is characterized by the steeper temperature or/and density gradient has been observed both in the core region (internal transport barrier : ITB) and edge region (edge transport barrier : ETB) in the plasmas with non-axisymmetric magnetic fields compared with the gyro-Bohm type L-mode transport. A reduction of thermal conductivity and particle diffusivity in these plasmas compared with the L-mode levels is observed and the parameter dependence of thermal conductivity and particle diffusivity changes significantly from that in L-mode. A negative or at least a weak dependence of the thermal diffusivity on temperature is observed in the heat transport barrier, while a strong temperature dependence (temperature to the power of 1.5) is normally observed in the L-mode region. In this paper, transport barriers that have been observed in non-axisymmetric magnetic field configuration are discussed from the view point of the parameter dependence of transport coefficients, not the shape of temperature or density profiles. The transition between the L-mode and the improved mode with a transport barrier is also discussed based on the idea of a bifurcation of multi-state transport (discrete transport states with different relations of heat flux to temperature gradient that are self consistent with the different turbulence states realized).
引用
收藏
页数:26
相关论文
共 50 条
  • [31] ELM pacing using modulated non-axisymmetric magnetic fields on DIII-D
    Solomon, W. M.
    Burrell, K. H.
    Garofalo, A. M.
    Groebner, R. J.
    Lasnier, C. J.
    Makowski, M. A.
    Osborne, T. H.
    Reimerdes, H.
    deGrassie, J. S.
    Doyle, E. J.
    Evans, T. E.
    Fenstermacher, M. E.
    Jackson, G. L.
    Schaffer, M. J.
    NUCLEAR FUSION, 2012, 52 (03)
  • [32] Polarization properties of standing shear Alfven waves in non-axisymmetric background magnetic fields
    Kabin, K.
    Rankin, R.
    Mann, I. R.
    Degeling, A. W.
    Marchand, R.
    ANNALES GEOPHYSICAE, 2007, 25 (03) : 815 - 822
  • [33] A NON-AXISYMMETRIC STRUCTURE OF CORONAL MAGNETIC LOOP
    王水
    A Monthly Journal of Science, 1984, (08) : 1028 - 1032
  • [34] Variation of magnetic braking by non-axisymmetric magnetic fields depending on the perturbed field structure in the KSTAR tokamak
    Kim, Kimin
    Jeon, Y. M.
    Park, J. -K.
    Ko, W. H.
    In, Y.
    Choe, W.
    Kim, J.
    Lee, S. G.
    Yoon, S. W.
    Kwak, J. G.
    Oh, Y. K.
    NUCLEAR FUSION, 2017, 57 (03)
  • [35] NON-AXISYMMETRIC PERPENDICULAR DIFFUSION OF CHARGED PARTICLES AND THEIR TRANSPORT ACROSS TANGENTIAL MAGNETIC DISCONTINUITIES
    Strauss, R. D.
    le Roux, J. A.
    Engelbrecht, N. E.
    Ruffolo, D.
    Dunzlaff, P.
    ASTROPHYSICAL JOURNAL, 2016, 825 (01):
  • [36] ENHANCED TRANSPORT IN NON-AXISYMMETRIC TOROIDAL DEVICES BY FLUCTUATIONS
    SHOHET, JL
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1975, 20 (10): : 1337 - 1338
  • [37] NEOCLASSICAL FLOWS AND TRANSPORT IN NON-AXISYMMETRIC TOROIDAL PLASMAS
    SHAING, KC
    CALLEN, JD
    PHYSICS OF FLUIDS, 1983, 26 (11) : 3315 - 3326
  • [38] Axisymmetric and non-axisymmetric modulated MHD waves in magnetic flux tubes
    Chargeishvili, B. B.
    Japaridze, D. R.
    NEW ASTRONOMY, 2016, 43 : 37 - 41
  • [39] Effects of non-axisymmetric magnetic field on characteristics of axisymmetric cusp DEC
    Tomita, Y.
    Yasaka, Y.
    Takeno, H.
    Ishikawa, M.
    Nakashima, Y.
    Katanuma, I.
    Cho, T.
    FUSION SCIENCE AND TECHNOLOGY, 2007, 51 (2T) : 177 - 179
  • [40] Neoclassical transport of impurities in tokamaks with non-axisymmetric perturbations
    Sinha, Priyanjana
    Ferraro, Nathaniel M.
    Belli, Emily A.
    PHYSICS OF PLASMAS, 2023, 30 (12)