We describe the evolution of a plasma equilibrium having a toroidal topology in the presence of constant electric resistivity. After outlining the main analytical properties of the solution, we illustrate its physical implications by reproducing the essential features of a scenario for the upcoming Italian experiment Divertor Tokamak Test Facility, with a good degree of accuracy. Although we find the resistive diffusion time scale to be of the order of 10 4 s, we observe a macroscopic change in the plasma volume on a time scale of 10 2 s, comparable to the foreseen duration of the plasma discharge by design. In the final part of the work, we compare our self-consistent solution to the more common Solov’ev one, and to a family of nonlinear configurations.
Diffusive time evolution of the Grad–Shafranov equation for a toroidal plasma / Montani, Giovanni; DEL PRETE, Matteo; Carlevaro, Nakia; Cianfrani, Francesco. - In: JOURNAL OF PLASMA PHYSICS. - ISSN 0022-3778. - 87:3(2021). [10.1017/S002237782100057X]
Diffusive time evolution of the Grad–Shafranov equation for a toroidal plasma
Giovanni Montani;Matteo Del Prete
;
2021
Abstract
We describe the evolution of a plasma equilibrium having a toroidal topology in the presence of constant electric resistivity. After outlining the main analytical properties of the solution, we illustrate its physical implications by reproducing the essential features of a scenario for the upcoming Italian experiment Divertor Tokamak Test Facility, with a good degree of accuracy. Although we find the resistive diffusion time scale to be of the order of 10 4 s, we observe a macroscopic change in the plasma volume on a time scale of 10 2 s, comparable to the foreseen duration of the plasma discharge by design. In the final part of the work, we compare our self-consistent solution to the more common Solov’ev one, and to a family of nonlinear configurations.File | Dimensione | Formato | |
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