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Zhurnal Tekhnicheskoi Fiziki, 2021 Volume 91, Issue 3, Pages 412–420 (Mi jtf5051)

This article is cited in 1 paper

Plasma

First heat and particles transport study in the Globus-M2 spherical tokamak with neutral beam injection at the current ramp-up

A. Yu. Telnovaa, G. S. Kurskieva, I. M. Balachenkova, N. N. Bakhareva, V. K. Guseva, N. S. Zhil'tsova, A. A. Kavinb, E. O. Kiseleva, V. B. Minaeva, I. V. Miroshnikova, M. I. Patrova, Yu. V. Petrova, N. V. Sakharova, V. A. Tokareva, S. Yu. Tolstyakova, E. A. Tukhmenevaa, N. A. Khromova, K. D. Shulyat'eva, P. B. Shchegoleva

a Ioffe Institute, St. Petersburg
b D. V. Efremov Scientific Research Institute of Electrophysical Apparatus, St. Petersburg

Abstract: The article presents the results of studying the transfer of heat and particles in the Globus-M2 spherical tokamak in discharges with neutral injection at the current ramp up. An atomic beam was injected into the tokamak plasma at a fixed toroidal magnetic field of 0.7 T. The plasma current on the plateau was varied in the range 0.2–0.3 MA. Based on the electron temperature and concentration spatial distributions measured by the Thomson scattering method, the transport of heat and particles in plasma was simulated using the ASTRA code. The energy confinement time of the plasma was determined, as well as estimates of the coefficients of thermal diffusivity and diffusion was made.

Keywords: nuclear fusion, transport analysis, neutral beam injection plasma heating, internal transport barriers.

Received: 06.08.2020
Revised: 25.09.2020
Accepted: 14.10.2020

DOI: 10.21883/JTF.2021.03.50517.103-20


 English version:
Technical Physics, 2021, 66:3, 401–408

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