by webmaster | Nov 2018 | Posters, Edge Control, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library, Simulation, Stability
October 2018 | M. Onofri | APS-DPP | Poster
We study the effects of end shorting and electrostatic biasing in simulations of the C-2W Field Reversed Configuration experiment using the Q2D code.
by webmaster | Sep 2017 | Papers, Equilibrium, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Research Library, Simulation, Theory, Transport
September 2017 | M. Onofri | Physics of Plasmas | Paper
The transport phenomenon of a Field Reversed Configuration (FRC) is studied using the newly developed two-dimensional code Q2D, which couples a magnetohydrodynamic code with a Monte Carlo code for the beam component. The simulation by Q2D of the transport parallel to the simple open h-pinch fields and its associated outflow phenomenon shows an excellent agreement with one of the leading theories, elevating the Q2D validity and simultaneously deepening the theoretical understanding of this fundamental process.
by admin | Oct 2014 | Posters, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library, Simulation, Transport
October 2014 | M. Onofri | APS-DPP | Poster
The 2D transport code Q2D is used to study transport in the C-2 Field Reversed Configuration with neutral beam injection.
by admin | Nov 2013 | Posters, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library, Simulation, Transport
November 2013 | M. Onofri | APS-DPP | Poster
The evolution of a Field Reversed Configuration with neutral beam injection is studied using the Q2D code.
by admin | Apr 2013 | Presentations, Fusion Energy, Fusion Research, Fusion Science, Fusion Technology, Plasma Research, Research Library, Simulation, Transport
April 2013 | M. Onofri | Sherwood Fusion Theory | Presentation
A 2D transport code (Q2D) is used to study the evolution of C2 Field Reversed Configuration with neutral beam injection.