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Título : Design of a beam dump for the IFMIF-EVEDA accelerator
Autor : Brañas, Beatriz
Iglesias, Daniel
Arranz, Fernando
Barrera, Germán
Casal, Natalia
Gómez, Jose
López, Daniel
Martín-Fuertes, Francisco
Ogando, Francisco
Oliver, Concepción
Sanz, Javier
Sauvan, Patrick
Ibarra, Angel
Palabras clave : Beam stop
Thermo-mechanical design
Fecha de publicación : jun-2009
Editorial : Elsevier
Citación : DOI: 10.1016/J.FUSENGDES.2008.12.078
Resumen : The IFMIF-EVEDA accelerator will be a 9 MeV, 125mA cw deuteron accelerator prototype for verifying the validity of the accelerator design for IFMIF. A beam stop will be used for the RFQ and DTL commissioning as well as for the EVEDA accelerator tests. Therefore, this component must be designed to stop 5 MeV and 9 MeV deuteron beams with a maximum power of 1.13MW. The first step of the design is the beam-facing material selection. The criteria used for this selection are low neutron production, low activation and good thermomechanical behavior. In this paper, the mechanical analysis and radioprotection calculations that have led to the choice of the main beam dump parameters will be described. The present design is based on a conical beamstop (2.5 m length, 30 cm diameter, and 3.5 mm thickness) made of copper plus a cylindrical 0.5m long beam scraper. The cooling system is based on an axial high velocity flow of water. This design is compliant with the mechanical design rules during full power stationary operation of the accelerator. The radioprotection calculations performed demonstrate that, with an adequate local shielding, doses during beam on/off phases are below the limits.
Descripción : The article describes the conceptual design of the beam stopper for the facility currently known as LIPAc located in Rokkasho (Japan)
URI : http://documenta.ciemat.es/handle/123456789/2136
ISSN : 0920-3796
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