DocumentCode
2723993
Title
Nuclear analysis for the blanket and shield of the KrF laser driven inertial fusion reactor SOMBRERO
Author
Sawan, M.E. ; Khater, H.Y.
Author_Institution
Fusion Technol. Inst., Wisconsin Univ., Madison, WI, USA
Volume
2
fYear
1993
fDate
11-15 Oct 1993
Firstpage
769
Abstract
The SOMBRERO inertial fusion reactor conceptual design produces 1000 MWe utilizing near symmetric illumination of targets by KrF laser. The blanket design optimization results in achieving an overall tritium breeding ratio of 1.25 and an overall reactor energy multiplication of 1.08. The first wall is expected to have a 5 full power year (FPY) lifetime. The shield surrounding the reactor chamber has been designed to reduce the operational dose rate to an acceptable level and make it possible to perform hands-on maintenance on final optics and the intermediate heat exchanger (IHX) located outside the reactor chamber. The chamber is surrounded by a cylindrical concrete shield with 10 m inner radius and 1.7 m thickness. An outer containment building is used at 55 m from the target. Grazing incidence metallic mirrors are located at 30 m and dielectric coated final focusing mirrors at 50 m from the target. Source neutrons are directed into neutron traps attached to the containment building to enhance the lifetime of the final mirrors
Keywords
fusion reactor blankets; fusion reactor design; fusion reactors; plasma heating by laser; plasma production by laser; shielding; IHX; KrF; KrF laser driven inertial fusion reactor; SOMBRERO; blanket; blanket design optimization; containment building; cylindrical concrete shield; dielectric coated final focusing mirrors; final mirror lifetime; final optics; grazing incidence metallic mirrors; hands-on maintenance; intermediate heat exchanger; neutron traps; operational dose rate; outer containment building; overall reactor energy multiplication; overall tritium breeding ratio; reactor chamber; shield; source neutrons; target illumination; Concrete; Design optimization; Fusion reactor design; Fusion reactors; Inductors; Laser fusion; Lighting; Mirrors; Neutrons; Optical design;
fLanguage
English
Publisher
ieee
Conference_Titel
Fusion Engineering, 1993., 15th IEEE/NPSS Symposium on
Conference_Location
Hyannis, MA
Print_ISBN
0-7803-1412-3
Type
conf
DOI
10.1109/FUSION.1993.518441
Filename
518441
Link To Document