Mathematical Modeling of Plasma Transport in a Helical Magnetic Field

The paper presents a mathematical model of the plasma transport in a helical magnetic field for a new SMOLA device for plasma confinement, created at the Budker Institute of Nuclear Physics of Siberian Branch of the Russian Academy of Sciences (SB RAS). Confinement is carried out due to momentum transfer from a magnetic field with helical symmetry to a rotating plasma. The stationary equation of plasma transport in the axially symmetric formulation contains the second derivatives, including mixed ones. The variable coefficients have a complex form and contain experimentally obtained dependencies. The model is implemented by using the establishment method, the Douglas–Rachford scheme and the tridiagonal matrix algorithm. The distribution of the substance concentration obtained by numerical simulation has a qualitative correspondence with the data of field experiments. The created model makes it possible to obtain dependencies of the integral characteristics of the plasma on the depth of the magnetic field corrugation, diffusion and plasma potential.

Авторы
Lazareva G.G. 1 , Oksogoeva I.P. 1 , Sudnikov A.V.2
Издательство
Pleiades Publishing
Номер выпуска
10
Язык
Русский
Страницы
2685-2691
Статус
Опубликовано
Том
43
Год
2022
Организации
  • 1 Peoples Friendship University of Russia (RUDN University)
  • 2 Budker Institute of Nuclear Physics, Siberian Branch of the Russian Academy of Sciences
Ключевые слова
mathematical modeling; transfer equation; helical magnetic field
Дата создания
28.12.2023
Дата изменения
28.12.2023
Постоянная ссылка
https://repository.rudn.ru/ru/records/article/record/98239/
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