Two-fluid and magnetohydrodynamic modelling of magnetic reconnection in the MAST spherical tokamak and the solar corona
arXiv:1507.07432 · doi:10.1088/0741-3335/58/1/014041
Abstract
Twisted magnetic flux ropes are ubiquitous in space and laboratory plasmas, and the merging of such flux ropes through magnetic reconnection is an important mechanism for restructuring magnetic fields and releasing free magnetic energy. The merging-compression scenario is one possible start up scheme for spherical tokamaks, which has been used on the Mega Amp Spherical Tokamak MAST. Two current-carrying plasma rings, or flux ropes, approach each other through the mutual attraction of their like currents, and merge, through magnetic reconnection, into a single plasma torus, with substantial plasma heating. 2D resistive MHD and Hall MHD simulations of this process are reported, and new results for the temperature distribution of ions and electrons are presented. A model of the based on relaxation theory is also described, which is now extended to tight aspect ratio geometry. This model allows prediction of the final merged state and the heating. The implications of the relaxation model for heating of the solar corona are also discussed, and a model of the merger of two or more twisted coronal flux ropes is presented, allowing for different senses of twist.
References in corpus (8)
- Key Aspects of Coronal Heating
- Recent advances in coronal heating
- Electron and ion heating characteristics during magnetic reconnection in MAST
- The Onset of Ion Heating During Magnetic Reconnection with a Strong Guide Field
- Relating magnetic reconnection to coronal heating
- Coronal heating in multiple magnetic threads
- The X10 Flare on 2003 October 29: Triggered by Magnetic Reconnection between Counter-Helical Fluxes?
- Fluid vs. kinetic magnetic reconnection with strong guide-fields
Cited by in corpus (6)
- Flux-Rope Twist in Eruptive Flares and CMEs: due to Zipper and Main-Phase Reconnection
- Overview of recent physics results from MAST
- High-order two-fluid plasma solver for direct numerical simulations of plasma flows with full transport phenomena
- Multi-region relaxed Hall magnetohydrodynamics with flow
- The effects of resistivity on oscillatory reconnection and consequences for solar flare Quasi Periodic Pulsations
- Scaling of reconnection parameters in magnetic island coalescence: Role of in-plane shear flow