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Title: Modeling of Particle Transport on Channels and Gaps Exposed to Plasma Fluxes

Journal Article · · AIP Conference Proceedings
DOI:https://doi.org/10.1063/1.2917002· OSTI ID:21137011
 [1]
  1. Instituto Tecnologico de Toluca Av. Tecnologico S/N Col. La Virgen Metepec, Mexico, 52140 (Mexico)

Many problems in particle transport in fusion devices involve the transport of plasma or eroded particles through channels or gaps, such as in the case of trying to assess damage to delicate optical diagnostics collecting light through a slit or determining the deposition and codeposition on the gaps between tiles of plasma-facing components. A dynamic-composition Monte Carlo code in the spirit of TRIDYN, previously developed to study composition changes on optical mirrors subject to ion bombardment, has been upgraded to include motion of particles through a volume defined by sets of plane surfaces. Particles sputtered or reflected from the walls of the channel/gap can be tracked as well, allowing the calculation of wall impurity transport, either back to the plasma (for the case of a gap) or to components separated from the plasma by a channel/slit (for the case of optical diagnostics). Two examples of the code application to particle transport in fusion devices will be presented in this work: one will evaluate the erosion/impurity deposition rate on a mirror separated from a plasma source by a slit; the other case will look at the enhanced emission of tile material in the region of the gap between two tiles.

OSTI ID:
21137011
Journal Information:
AIP Conference Proceedings, Vol. 996, Issue 1; Conference: 17. IAEA technical meeting on research using small fusion devices, Lisbon (Portugal), 22-24 Oct 2007; Other Information: DOI: 10.1063/1.2917002; (c) 2008 American Institute of Physics; Country of input: International Atomic Energy Agency (IAEA); ISSN 0094-243X
Country of Publication:
United States
Language:
English