Author:
Shah K.,Ghosh J.,Patel S.,Chowdhuri M. B.,Jadeja K. A.,Shukla G.,Macwan T.,Kumar A.,Dolui S.,Singh K.,Tanna R. L.,Patel K. M.,Dey R.,Manchanda R.,Ramaiya N.,Kumar R.,Aich S.,Yadava N.,Purohit S.,Gupta M. K.,Nagora U. C.,Pathak S. K.,Atrey P. K.,Mayya K. B. K.
Abstract
AbstractWe present experimental results of the trace argon impurity puffing in the ohmic plasmas of Aditya-U tokamak performed to study the argon transport behaviour. Argon line emissions in visible and Vacuum Ultra Violet (VUV) spectral ranges arising from the plasma edge and core respectively are measured simultaneously. During the experiments, space resolved brightness profile of Ar1+ line emissions at 472.69 nm (3p44s 2P3/2–3p44p 2D3/2), 473.59 nm (3p44s 4P5/2–3p44p 4P3/2), 476.49 nm (3p44s 2P1/2–3p44p 2P3/2), 480.60 nm (3p44s 4P5/2–3p44p 4P5/2) are recorded using a high resolution visible spectrometer. Also, a VUV spectrometer has been used to simultaneously observe Ar13+ line emission at 18.79 nm (2s22p 2P3/2–2s2p22P3/2) and Ar14+ line emission at 22.11 nm (2s21S0–2s2p 1P1). The diffusivity and convective velocity of Ar are obtained by comparing the measured radial emissivity profile of Ar1+ emission and the line intensity ratio of Ar13+ and Ar14+ ions, with those simulated using the impurity transport code, STRAHL. Argon diffusivities ~ 12 m2/s and ~ 0.3 m2/s have been observed in the edge (ρ > 0.85) and core region of the Aditya-U, respectively. The diffusivity values both in the edge and core region are found to be higher than the neo-classical values suggesting that the argon impurity transport is mainly anomalous in the Aditya-U tokamak. Also, an inward pinch of ~ 10 m/s mainly driven by Ware pinch is required to match the measured and simulated data. The measured peaked profile of Ar density suggests impurity accumulation in these discharges.
Funder
Department of Atomic Energy-Board of Research in Nuclear Sciences
Publisher
Springer Science and Business Media LLC
Cited by
4 articles.
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