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Accelerating simulations of electromagnetic waves in hot, magnetized fusion plasmas

Authors :
Bude, R.H.S.
van Eester, D.
van Dijk, J.
Jaspers, R.J.E.
Smolders, A.B.
Bude, R.H.S.
van Eester, D.
van Dijk, J.
Jaspers, R.J.E.
Smolders, A.B.
Source :
Plasma Physics and Controlled Fusion vol.63 (2021) nr.3 [ISSN 0741-3335]
Publication Year :
2021

Abstract

Accurate simulations of the behavior of RF waves in hot, magnetized fusion plasmas have traditionally been computationally demanding due to the integro-differential character of the hot plasma wave equation. In this work a method is described that allows the integral in the hot-plasma wave equation to be rewritten as a set of differential operators by fitting a polynomial through the dielectric tensor components. This approach is applied to a one-dimensional simulation with typical profiles and plasma parameters for the JET fusion reactor. The accuracy and computational time are compared with an all-orders model and a truncated Finite Larmor Radius model. It is shown that the proposed method can be used to achieve accuracies previously only obtained with extremely heavy all-orders models like the two-dimensional AORSA code, but at significantly reduced computational costs. The MATLAB code that has been developed in this work is available under the GPLv3 licence.

Details

Database :
OAIster
Journal :
Plasma Physics and Controlled Fusion vol.63 (2021) nr.3 [ISSN 0741-3335]
Notes :
Bude, R.H.S.
Publication Type :
Electronic Resource
Accession number :
edsoai.on1275443235
Document Type :
Electronic Resource