DocumentCode
74544
Title
Tokamak Plasma Parameters in the Presence of Resonant Field and Biased Electrode
Author
Elahi, Ahmad Salar ; Ghoranneviss, Mahmood
Author_Institution
Plasma Phys. Res. Center, Islamic Azad Univ., Tehran, Iran
Volume
42
Issue
10
fYear
2014
fDate
Oct. 2014
Firstpage
3397
Lastpage
3402
Abstract
Plasma energy, poloidal beta, plasma pressure, plasma temperature, plasma resistance, and plasma effective atomic number are important parameters in tokamak plasma experiments. In this paper, we present a theoretical and experimental approach especially based on diamagnetic loop for measurement of these parameters in the presence of resonant helical field (RHF) and biased electrode in IR-T1 tokamak. For this purpose, an electrode biasing system and a diamagnetic loop with its compensation coil designed, constructed, and installed on the IR-T1. In addition, we measured the plasma current, plasma voltage, and the plasma density from the Rogowski coil, the poloidal flux loop, and the Langmuir probe measurements, respectively. Experimental results show that the addition of a relatively small amount of RHF with L = 2 and L = 3 modes could be effective for improving the quality of tokamak plasma discharge by creating the steady-state plasma.
Keywords
Langmuir probes; Tokamak devices; discharges (electric); plasma density; plasma pressure; plasma temperature; plasma toroidal confinement; plasma transport processes; IR-T1 tokamak; Langmuir probe measurements; Rogowski coil; biased electrode; diamagnetic loop; electrode biasing system; plasma current; plasma density; plasma effective atomic number; plasma energy; plasma poloidal beta; plasma pressure; plasma resistance; plasma temperature; plasma voltage; poloidal flux loop; resonant helical field; steady-state plasma; tokamak plasma discharge; tokamak plasma experiments; tokamak plasma parameters; Coils; Electrodes; Plasma measurements; Plasma temperature; Probes; Tokamaks; Diamagnetic loop; electrode biasing system; resonant helical field (RHF); tokamak;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2014.2354671
Filename
6901250
Link To Document