This article presents a new method for estimating the electron temperature of the Protosphera’s screw pinch. The temperature radial profile is obtained by a self-consistent modeling of a 1DMHDequilibrium along with a 0D power balance of the plasma column, given measurements and estimates of the axial pinch plasma current, of the plasma rotational frequency and, at the equatorial plane, of the electron density radial profile, of the edge poloidal magnetic field, of the edge electron temperature and of the neutrals pressure in the vacuum vessel. The plasma is considered in equilibrium with its neutral phase and in constant rotation. A MATLAB code has been developed with the aim of estimating the MHD radial equilibrium profiles, the thermodynamic plasma state and the neutrals profile. The numerical estimates are compared with available experimental data showing a good agreement.
A new indirect measurement method of the electron temperature for the Proto-sphera's pinch plasma / Iannarelli, D.; Napoli, F.; Alladio, F.; Apruzzese, G.; Bombarda, F.; Buratti, P.; Delfini, J.; De Ninno, A.; Filippi, F.; Fiorucci, D.; Ingenito, A.; Mannori, S.; Micozzi, P.; Teofilatto, P.. - In: JOURNAL OF INSTRUMENTATION. - ISSN 1748-0221. - 18:4(2023), pp. 1-5. [10.1088/1748-0221/18/04/C04017]
A new indirect measurement method of the electron temperature for the Proto-sphera's pinch plasma
D. Iannarelli
Primo
Writing – Original Draft Preparation
;J. DelfiniData Curation
;A. IngenitoSupervision
;P. TeofilattoUltimo
Supervision
2023
Abstract
This article presents a new method for estimating the electron temperature of the Protosphera’s screw pinch. The temperature radial profile is obtained by a self-consistent modeling of a 1DMHDequilibrium along with a 0D power balance of the plasma column, given measurements and estimates of the axial pinch plasma current, of the plasma rotational frequency and, at the equatorial plane, of the electron density radial profile, of the edge poloidal magnetic field, of the edge electron temperature and of the neutrals pressure in the vacuum vessel. The plasma is considered in equilibrium with its neutral phase and in constant rotation. A MATLAB code has been developed with the aim of estimating the MHD radial equilibrium profiles, the thermodynamic plasma state and the neutrals profile. The numerical estimates are compared with available experimental data showing a good agreement.File | Dimensione | Formato | |
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