Title of article
Energy deposition and thermal effects of runaway electrons in ITER-FEAT plasma facing components
Author/Authors
Maddaluno، نويسنده , , G and Maruccia، نويسنده , , G and Merola، نويسنده , , M and Rollet، نويسنده , , S، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2003
Pages
6
From page
651
To page
656
Abstract
The profile of energy deposited by runaway electrons (RAEs) of 10 or 50 MeV in International Thermonuclear Experimental Reactor-Fusion Energy Advanced Tokamak (ITER-FEAT) plasma facing components (PFCs) and the subsequent temperature pattern have been calculated by using the Monte Carlo code FLUKA and the finite element heat conduction code ANSYS. The RAE energy deposition density was assumed to be 50 MJ/m2 and both 10 and 100 ms deposition times were considered. Five different configurations of PFCs were investigated: primary first wall armoured with Be, with and without protecting CFC poloidal limiters, both port limiter first wall options (Be flat tile and CFC monoblock), divertor baffle first wall, armoured with W. The analysis has outlined that for all the configurations but one (port limiter with Be flat tile) the heat sink and the cooling tube beneath the armour are well protected for both RAE energies and for both energy deposition times. On the other hand large melting (W, Be) or sublimation (C) of the surface layer occurs, eventually affecting the PFCs lifetime.
Keywords
Runaway electrons , Energy deposition , FLUKA code , ITER FEAT , Plasma facing components
Journal title
Journal of Nuclear Materials
Serial Year
2003
Journal title
Journal of Nuclear Materials
Record number
1357346
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