Controlling the Diffusion of Runaway Electrons by Safety Factor Changes in IR-T1 Tokamak
Autor: | R. Arvin, M. R. Ghanbari, Mahmood Ghoranneviss, A. Salar Elahi, Siamak Mohammadi |
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Rok vydání: | 2015 |
Předmět: |
010302 applied physics
Physics Nuclear and High Energy Physics Range (particle radiation) Tokamak Safety factor Toroid Plasma Mechanics 01 natural sciences 010305 fluids & plasmas law.invention Nuclear Energy and Engineering law 0103 physical sciences Nuclear fusion Magnetohydrodynamics Diffusion (business) Atomic physics |
Zdroj: | Journal of Fusion Energy. 35:180-186 |
ISSN: | 1572-9591 0164-0313 |
DOI: | 10.1007/s10894-015-9992-6 |
Popis: | The high-energy current of runaway electrons during a major disruption in tokamak reactors can cause serious damage to the first wall of the reactor and reduce its lifetime. Therefore, it is important to find methods for decreasing the generation of runaway electrons and their energy. The safety factor plays an important role in determining the stability criteria for a wide range of MHD modes. Since runaway electrons suffer only rarely from collisions and are hardly sensitive to electrostatic turbulence, their transport is governed by the magnetic lines structure. On the other hand, since the safety factor is related to the magnetic lines structure, changes in safety factor may have important effects on the diffusion of runaway electrons. In this paper, the generation of runaway electrons and their transport is investigated theoretically. Moreover, by changing the discharge voltage of ohmic and toroidal capacitors, different values of the edge safety factor is generated. In fact, in this experiment, the researchers try to increase the diffusion of runaway electrons by using safety factor changes in the IR-T1 tokamak. |
Databáze: | OpenAIRE |
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