Abstract
An analysis is presented of a microinstability based model of anomalous transport which accounts for the effect of trapped electron dynamics and ion temperature gradients. A comparison with the experimental results obtained with the FT, TFTR and ASDEX tokamaks shows good agreement for the case of ohmic or moderate auxiliary heating; while in the case of strong auxiliary heating, results comparison shows that the convective part of the electron heat flux can be overestimated.
Citation Formats
Romanelli, F, and Nocentini, A.
Tokamak plasmas: 1-D modelling.
Italy: N. p.,
1991.
Web.
Romanelli, F, & Nocentini, A.
Tokamak plasmas: 1-D modelling.
Italy.
Romanelli, F, and Nocentini, A.
1991.
"Tokamak plasmas: 1-D modelling."
Italy.
@misc{etde_10107662,
title = {Tokamak plasmas: 1-D modelling}
author = {Romanelli, F, and Nocentini, A}
abstractNote = {An analysis is presented of a microinstability based model of anomalous transport which accounts for the effect of trapped electron dynamics and ion temperature gradients. A comparison with the experimental results obtained with the FT, TFTR and ASDEX tokamaks shows good agreement for the case of ohmic or moderate auxiliary heating; while in the case of strong auxiliary heating, results comparison shows that the convective part of the electron heat flux can be overestimated.}
place = {Italy}
year = {1991}
month = {Jun}
}
title = {Tokamak plasmas: 1-D modelling}
author = {Romanelli, F, and Nocentini, A}
abstractNote = {An analysis is presented of a microinstability based model of anomalous transport which accounts for the effect of trapped electron dynamics and ion temperature gradients. A comparison with the experimental results obtained with the FT, TFTR and ASDEX tokamaks shows good agreement for the case of ohmic or moderate auxiliary heating; while in the case of strong auxiliary heating, results comparison shows that the convective part of the electron heat flux can be overestimated.}
place = {Italy}
year = {1991}
month = {Jun}
}