Simulations of the field-reversed configuration with the NIMROD code

被引:2
|
作者
Macnab, A. I. D. [1 ]
Barnes, D. C.
Milroy, R. D.
Kim, C. C.
Sovinec, C. R.
机构
[1] Univ Washington, PSI Ctr, Washington, DC USA
[2] Univ Colorado, Ctr Integrated Plasma Studies, Boulder, CO 80309 USA
[3] Univ Wisconsin, PSI Ctr, Madison, WI 53706 USA
关键词
field-reversed configuration; 3D MHD simulation; extended MHD;
D O I
10.1007/s10894-006-9070-1
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 recently formed Plasma Science and Innovation Center (PSI-Center) is refining the NIMROD code to simulate field-reversed configurations (FRCs). The NIMROD code can resolve highly anisotropic heat conduction and viscosity. This, combined with its ability to include two-fluid effects, allows us to capture more detailed physics than previous calculations. Some initial simulations are focused on 2D (n = 0 only) non-linear two-fluid simulations. We present initial validations of a translating FRC and note good conservation of density and magnetic flux. As a validation of the effects of anisotropic thermal conduction, we present a comparison of an FRC with standard thermal transport to one with anisotropic conduction. Two-fluid simulations are shown which produce significant spin-up due to the end-shorting boundary condition. Finally, simulations of the tilt instability are presented, which show that Hall physics significantly retards, but does not eliminate the growth rate.
引用
收藏
页码:113 / 117
页数:5
相关论文
共 50 条
  • [1] Simulations of the Field-Reversed Configuration with the NIMROD Code
    A. I. D. Macnab
    D. C. Barnes
    R. D. Milroy
    C. C. Kim
    C. R. Sovinec
    Journal of Fusion Energy, 2007, 26 : 113 - 117
  • [2] Kinetic simulations of the formation and stability of the field-reversed configuration
    Omelchenko, YA
    PHYSICS OF PLASMAS, 2000, 7 (05) : 1443 - 1451
  • [3] ROTATIONAL INSTABILITIES IN THE FIELD-REVERSED CONFIGURATION - RESULTS OF HYBRID SIMULATIONS
    HARNED, DS
    PHYSICS OF FLUIDS, 1983, 26 (05) : 1320 - 1326
  • [4] Anatomy of a field-reversed configuration
    Steinhauer, L. C.
    Roche, T.
    Steinhauer, J. D.
    PHYSICS OF PLASMAS, 2020, 27 (11)
  • [5] EXPERIMENTS OF A FIELD-REVERSED CONFIGURATION
    WANG, GY
    WANG, SZ
    CUI, HZ
    LIAO, JC
    CHINESE PHYSICS, 1984, 4 (04): : 874 - 878
  • [6] Cross-separatrix simulations of turbulent transport in the field-reversed configuration
    Lau, C. K.
    Fulton, D. P.
    Bao, J.
    Lin, Z.
    Tajima, T.
    Schmitz, L.
    Dettrick, S.
    NUCLEAR FUSION, 2019, 59 (06)
  • [7] Field-Reversed Configuration Induced by a Paramagnetic Field
    Twarog, D.
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2013, 41 (02) : 280 - 289
  • [8] A high performance field-reversed configuration
    Binderbauer, M. W.
    Tajima, T.
    Steinhauer, L. C.
    Garate, E.
    Tuszewski, M.
    Schmitz, L.
    Guo, H. Y.
    Smirnov, A.
    Gota, H.
    Barnes, D.
    Deng, B. H.
    Thompson, M. C.
    Trask, E.
    Yang, X.
    Putvinski, S.
    Rostoker, N.
    Andow, R.
    Aefsky, S.
    Bolte, N.
    Bui, D. Q.
    Ceccherini, F.
    Clary, R.
    Cheung, A. H.
    Conroy, K. D.
    Dettrick, S. A.
    Douglass, J. D.
    Feng, P.
    Galeotti, L.
    Giammanco, F.
    Granstedt, E.
    Gupta, D.
    Gupta, S.
    Ivanov, A. A.
    Kinley, J. S.
    Knapp, K.
    Korepanov, S.
    Hollins, M.
    Magee, R.
    Mendoza, R.
    Mok, Y.
    Necas, A.
    Primavera, S.
    Onofri, M.
    Osin, D.
    Rath, N.
    Roche, T.
    Romero, J.
    Schroeder, J. H.
    Sevier, L.
    Sibley, A.
    PHYSICS OF PLASMAS, 2015, 22 (05)
  • [9] FIELD-REVERSED MIRROR TRANSPORT CODE
    SHUMAKER, DE
    MCNAMARA, B
    BOYD, JK
    BULLETIN OF THE AMERICAN PHYSICAL SOCIETY, 1979, 24 (08): : 955 - 955
  • [10] Separatrix shape of field-reversed configuration
    Ohkuma, Yasunori
    Hiroi, Masanori
    Ikeyama, Taeko
    Nogi, Yasuyuki
    PHYSICS OF PLASMAS, 2010, 17 (04)