Center for Extended Magnetohydrodynamic Modeling

Publications

2005

  • D. P. Brennan, S. E. Kruger, T. A. Gianakon, D. D. Schnack, “A categorization of tearing mode onset in tokamaks via nonlinear simulation,” Nuclear Fusion , vol 45, p. 1178 (2005).
  • J. Chen, S. C. Jardin, H. R. Strauss, “Solving anisotropic transport equations on misaligned grids,” Lecture Notes in Computer Science , vol 3516, pp. 1076-1079 (2005), Springer-Verlag.
  • B. Cohen, E. B. Hooper, R. H. Cohen, D. N. Hill, H. S. McLean, R. D. Wood, S. Woodruff, C. R. Sovinec, G. A. Cone, “2005 Simulation of spheromak evolution and energy confinement,” Physics of Plasmas , vol 12 (2005).
  • S. C. Jardin, J. A. Breslau, “Implicit solution of the four-field extended-magnetohydrodynamic equations using high-order high-continuity finite elements,” Physics of Plasmas , vol 12, p. 10 (2005).
  • E. B. Hooper, T. A. Kopriva, B. I. Cohen, D. N. Hill, H. S. Mclean, R. D. Wood, S. Woodruff, C. R. Sovinec, "A magnetic meconnection event in a driven spheromak," Physics of Plasmas , vol 12, 092503 (2005).
  • S. E. Kruger, D. D. Schnack, C. R. Sovinec, “Dynamics of the major disruption of a DIII-D plasma,” Physics of Plasmas , vol 12 (2005).
  • J. E. Menard, R. E. Bell, E. D. Fredrickson, W. Park, et al., “Internal kink mode dynamics in high-beta NSTX plasmas,” Nuclear Fusion , vol 45(7), pp. 539-556 (2005).
  • J. J. Ramos, "Fluid formalism for collisionless magnetized plasmas,” Physics of Plasmas , vol 12 (2005).
  • J. J. Ramos, “General expression of the gyroviscous force,” Physics of Plasmas , vol 12 (2005).
  • C. R. Sovinec, B. I. Cohen, G. A. Cone, E. B. Hooper, H. S. McLean, “Numerical investigation of transients in the SSPX spheromak,” Physical Review Letters , vol 94(3) 035003 (2005).
  • C. R. Sovinec, J. M. Finn, D. del-Castillo-Negrete, "Formation and sustainment of spheromaks in the resistive MHD model," Physics of Plasmas , vol 8, p. 475 (2001).
  • L. E. Sugiyama, W. Park, H. R. Strauss, G. Fu, J. Breslau, J. Chen, S. Klasky, “Plasmas beyond MHD: two-fluids and symmetry breaking,” Journal of Physics: Conference Series , vol 16, pp. 54-58 (2005).
  • V. Wheatley, D. I. Pullin, R. Samtaney, “On the regular refraction of a MHD shock at a density interface,” Journal of Fluid Mechanics , vol 522, pp. 179-214 (2005).
  • V. Wheatley, D. I. Pullin, R. Samtaney, “Stability of an impulsively accelerated density interface in MHD,” Physical Review Letters , vol 95, p. 12 (2005).

2004

  • J. Chen, J. Breslau, G. Fu, S. Jardin, W. Park, “Symmetric solution in M3D,” Computer Physics Communications , vol 164(1-3), pp. 468-471 (2004).
  • E. D. Held, J. D. Callen, C. C. Hegna, C. R. Sovinec, T. A. Gianakon, S. E. Kruger, “Nonlocal closures for plasma fluid simulations,” Physics of Plasmas , vol 11, p. 2419 (2004).
  • S. C. Jardin, “A triangular finite element with first-derivative continuity applied to fusion MHD applications,” Journal of Computational Physics , vol 200, p. 133 (2004).
  • S. E. Kruger, C. R. Sovinec, D. D. Schnack, E. D. Held, “Free-boundary simulations of DIII-D plasmas with the NIMROD code,” Computer Physics Communications , vol 164(1-3), pp. 34-39 (2004).
  • R. S. Samtaney, S. C. Jardin, P. Colella, D. F. Martin, “3D adaptive mesh refinement simulations of pellet injection in tokamaks,” Computer Physics of Communications , vol 164(1-3), pp. 220-228 (2004).
  • C. R. Sovinec, A. H. Glasser, D. C. Barnes, T. A. Gianakon, R. A. Nebel, S. E. Kruger, D. D. Schnack, S. J. Plimpton, A. Tarditi, M. S. Chu, the NIMROD Team, "Nonlinear magnetohydrodynamics with high-order finite elements,” Journal of Computational Physics , vol 195, p. 355 (2004).
  • H. R. Strauss, A. Pletzer, W. Park, S. Jardin, J. Breslau, L. Sugiyama, “MHD simulations with resistive wall and magnetic separatrix,” Computer Physics Communications , vol 164(1-3), pp. 40-45 (2004).
  • H. R. Strauss, L. E. Sugiyama, G. Y. Fu, W. Park, J. Breslau, “Simulation of two fluid and energetic particle effects in stellarators,” Nuclear Fusion , vol 44(9), pp. 1008-1014 (2004).
  • W. Wan, Y. Chen, S. E. Parker, “Gyrokinetic delta f simulation of the collisionless and semicollisional tearing mode instability,” Physics of Plasmas , vol 12(1) 012311 (2004).

2003

  • D. P. Brennan, R. J. La Haye, A. D. Turnbull, et al., “A mechanism for tearing onset near ideal stability boundaries,” Physics of Plasmas , vol 10, p. 1643 (2003).
  • J. A. Breslau, S. C. Jardin, W. Park, "Simulation studies of the role of reconnection in the 'current hole' experiments in the joint European torus,” Physics of Plasmas , vol 10, p. 1665 (2003).
  • E. D. Held, “Unified form for parallel ion viscocus stress in magnetized plasmas,” Physics of Plasmas , vol 10, p. 4708 (2003).
  • E. D. Held, J. D. Callen, C. C. Hegna, C. R. Sovinec, “Conductive electron heat flow along an inhomogeneous magnetic field,” Physics of Plasmas , vol 10, p. 3933 (2003).
  • C. C. Kim, C. R. Sovinec, S. E. Parker, the NIMROD Team, “Hybrid kinetic-MHD simulations in general geometry,” Computer Physics Communications , vol 164(1-3), pp. 448-455 (2003).
  • R. Samtaney, “Suppression of the Richtmyer-Meshkov instability in the presence of a magnetic field,” Physics of Fluids , vol 15, pp. L53-56 (2003).
  • C. R. Sovinec, T. A. Gianakon, E. D. Held, S. E. Kruger, D. D. Schnack, the NIMROD Team, "NIMROD: a computational laboratory for studying nonlinear fusion magnetohydrodynamics,'' Physics of Plasmas , vol 10, p. 1727 (2003).

2002

  • T. A. Gianakon, S. E. Kruger, C. C. Hegna, "Heuristic closures for numerical simulation of neoclassical tearing modes," Physics of Plasmas , vol 9, p. 536 (2002).

2001

  • E. D. Held, J. D. Callen, C. C. Hegna, C. R. Sovinec, "Conductive electron heat flow along magnetic field lines," Physics of Plasmas , vol 8, p. 1171 (2001).
  • C. R. Sovinec, J. M. Finn, D. del-Castillo-Negrete, "Formation and sustainment of spheromaks in the resistive MHD model," Physics of Plasmas , vol 8, p. 475 (2001).
  • L. E. Sugiyama, W. Park, H. R. Strauss, et al., “Studies of spherical tori, stellarators, and anisotropic pressure with the M3D code,” Nuclear Fusion , vol 41, p. 739 (2001).

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