Back to Search Start Over

ASCOT orbit-following simulations of ion cyclotron heating with synthetic fast ion loss diagnostic : a first application to ASDEX Upgrade

Authors :
Sipila, Seppo
Varje, Jari
Jonsson, Thomas
Bilato, Roberto
Galdon-Quiroga, Joaquin
Snicker, Antti
Kurki-Suonio, Taina
Sanchis, Lucia
Silvagni, Davide
Gonzalez-Martin, Javier
Sipila, Seppo
Varje, Jari
Jonsson, Thomas
Bilato, Roberto
Galdon-Quiroga, Joaquin
Snicker, Antti
Kurki-Suonio, Taina
Sanchis, Lucia
Silvagni, Davide
Gonzalez-Martin, Javier
Publication Year :
2021

Abstract

The orbit-following Monte Carlo code ASCOT interfaced with the radiofrequency Monte Carlo library RFOF can simulate radiofrequency heating of ion populations using wave solutions from full-wave solvers such as TORIC. It is applied to the fundamental mode ion cyclotron resonant heating of hydrogen and 2nd harmonic frequency heating of neutral beam injected deuterium in ASDEX Upgrade discharge #33147 to validate the model against fast ion loss detector (FILD) measurements. In addition, for FILD signal simulations requiring enhanced resolution or scanning the effect of various perturbations such as magnetohydrodynamic phenomena near the plasma edge, a two-stage simulation scheme is presented where the fast ion population is first created by a full ASCOT-RFOF ion cyclotron heating simulation, and the resulting distribution is then used as an input to ASCOT's distribution-sampling marker source module for more efficient simulation of the ICRH ion wall load and FILD signal. A satisfactory agreement with the experimentally observed FILD signal is found.<br />QC 20210804

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1280630594
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1088.1741-4326.ac0e71