Modeling and Simulating Flowing Plasmas and Related Phenomena

被引:0
|
作者
S. A. Ledvina
Y.-J. Ma
E. Kallio
机构
[1] University of California,Space Sciences Lab
[2] UCLA,IGPP
[3] Space Research Unit,Finnish Meteorological Inst.
来源
Space Science Reviews | 2008年 / 139卷
关键词
Plasma; Magnetohydrodynamics; Test-particle; Hybrid; Simulations; Numerical methods;
D O I
暂无
中图分类号
学科分类号
摘要
Simulation has become a valuable tool that compliments more traditional methods used to understand solar system plasmas and their interactions with planets, moons and comets. The three popular simulation approaches to studying these interactions are presented. Each approach provides valuable insight to these interactions. To date no one approach is capable of simulating the whole interaction region from the collisionless to the collisional regimes. All three approaches are therefore needed. Each approach has several implicit physical assumptions as well as several numerical assumptions depending on the scheme used. The magnetohydrodynamic (MHD), test-particle/Monte-Carlo and hybrid models used in simulating flowing plasmas are described. Special consideration is given to the implicit assumptions underlying each model. Some of the more common numerical methods used to implement each model, the implications of these numerical methods and the resulting limitations of each simulation approach are also discussed.
引用
收藏
页码:143 / 189
页数:46
相关论文
共 50 条
  • [31] Hall effect on relaxation process of flowing plasmas
    Ohsaki, S
    PHYSICS OF PLASMAS, 2005, 12 (03) : 1 - 6
  • [32] JETS OF LAMINARY PLASMAS FLOWING IN FREE AIR
    VALENTIN, P
    BOULANGE.P
    VUAGNAT, J
    LIMARE, A
    COMPTES RENDUS HEBDOMADAIRES DES SEANCES DE L ACADEMIE DES SCIENCES SERIE A, 1968, 266 (05): : 296 - &
  • [33] DISSOCIATION OF NITROGEN IN FLOWING DC GLOW PLASMAS
    KUMAR, S
    GHOSH, PK
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 1993, 26 (09) : 1419 - 1426
  • [34] Driven nonlinear structures in flowing dusty plasmas
    Bandyopadhyay, Pintu
    Sen, Abhijit
    REVIEWS OF MODERN PLASMA PHYSICS, 2022, 6 (01)
  • [35] Flowing electron plasmas as modified current source
    Himura, H
    Nakashima, C
    Saito, H
    Yoshida, Z
    Morikawa, J
    Fukao, M
    NON-NEUTRAL PLASMA PHYSICS IV, 2002, 606 : 661 - 670
  • [36] Flowing liquid crystal simulating the Schwarzschild metric
    Pereira, Erms R.
    Moraes, Fernando
    CENTRAL EUROPEAN JOURNAL OF PHYSICS, 2011, 9 (04): : 1100 - 1105
  • [37] Energetics of Resistive Wall Modes in Flowing Plasmas
    M.HIROTA
    Plasma Science and Technology, 2009, 11 (04) : 409 - 412
  • [38] Use of Performance Criteria in Calibrating Methods for Modeling and Simulating the Pollution Phenomena of Surface Waters
    Toth, Lorand
    Gaman, George Artur
    Pupazan, Daniel
    Nicolescu, Cristian
    Kovacs, Marius
    2020 8TH INTERNATIONAL CONFERENCE ON ENVIRONMENT POLLUTION AND PREVENTION (ICEPP 2020), 2021, 241
  • [39] Simulating coupling complexity in space plasmas
    Zank, G. P.
    Pogorelov, N. V.
    Raeder, J.
    Florinski, V.
    Heerikhuisen, J.
    Shaikh, Dastgeer
    Kryukov, I. A.
    Borovikov, S. N.
    NUMERICAL MODELING OF SPACE PLASMA FLOWS: ASTRONUM-2006, 2006, 359 : 62 - 68
  • [40] THE SIZE EFFECT OF A LANGMUIR PROBE INTO FLOWING THERMAL PLASMAS
    Lee, J. C.
    Kim, Y. J.
    MODERN PHYSICS LETTERS B, 2009, 23 (03): : 465 - 468