Dynamics of Scrape-Off Layer Filaments in high β plasmas
Hoare, TCulham Centre for Fusion Energy, Oxon, United Kingdom - Department of Physics, University of Bath, United Kingdom
Militello, FCulham Centre for Fusion Energy, Oxon, United Kingdom
Omotani, J TCulham Centre for Fusion Energy, Oxon, United Kingdom
Riva, Fabio Matteo
ORCID
Istituto ricerche solari Aldo e Cele Daccò (IRSOL), Faculty of Informatics, Università della Svizzera italiana Switzerland - Culham Centre for Fusion Energy, Oxon, United Kingdom
Newton, SCulham Centre for Fusion Energy, Oxon, United Kingdom
Nicholas, TCulham Centre for Fusion Energy, Oxon, United Kingdom - Department of Physics, University of York, United Kingdom
Ryan, DCulham Centre for Fusion Energy, Oxon, United Kingdom
Walkden, N RCulham Centre for Fusion Energy, Oxon, United Kingdom
Plasma Physics and Controlled Fusion. - 2019, vol. 61, no. 10, p. 105013
English
The role of magnetic perturbations generated by filaments in the scrape-off layer is investigated by performing simulations of 3D seeded filaments with an electromagnetic numerical code which includes sheath boundary conditions. Depending on the plasma β, three smoothly connecting regimes were identified: an electrostatic regime where the magnetic field is substantially unaffected by the motion of the filament, an intermediate regime where the magnetic field is excited but relaxes within the filament’s lifetime and an electromagnetic regime where the frozen-in condition is well satisfied. The electromagnetic effects are found to have a significant impact on the filament dynamics at values of β relevant for fusion devices, including increased midplane radial velocity, bending of the filament and braiding of magnetic field lines. Importantly, a finite Alfvén speed can allow electrical disconnection of the target and the upstream part of the filament, thus removing the slowing down effect associated with the sheath and producing faster filaments and more intense cross-field transport in perturbations that were affected by the sheath in the β = 0 limit.