DocumentCode
1352314
Title
Application of X-Ray Computer Tomography for Observing the Central Void Formations and the Fuel Pin Deformations of Irradiated FBR Fuel Assemblies
Author
Katsuyama, Kozo ; Nagamine, Tsuyoshi ; Furuya, Hirotaka
Author_Institution
Oarai R&D Center, Japan Atomic Energy Agency, Oarai, Japan
Volume
57
Issue
5
fYear
2010
Firstpage
2714
Lastpage
2718
Abstract
In order to observe the structural change in the interior of irradiated fuel assemblies, a non-destructive post-irradiation examination (PIE) technique using X-ray computer tomography (X-ray CT) was developed. This X-ray CT technique was applied to observe the central void formations and fuel pin deformations of fuel assemblies which had been irradiated at high linear heat rating. The central void sizes in all fuel pins were measured on five cross sections of the core fuel column as a parameter for evaluating fuel thermal performance. In addition, the fuel pin deformations were analyzed from X-ray CT images obtained along the axial direction of a fuel assembly at the same separation interval. A dependence of void size on the linear heat rating was seen in the fuel assembly irradiated at high linear heat rating. In addition, significant undulations of the fuel pin were observed along the axial direction, coinciding with the wrapping wire pitch in the core fuel column. Application of the developed technique should provide enhanced resolution of measurements and simplify fuel PIEs.
Keywords
computerised tomography; fission reactor cooling; fission reactor fuel preparation; liquid metal fast breeder reactors; nondestructive testing; PIE technique; X-ray computer tomography application; central void formations; core fuel column; evaluating fuel thermal performance; fast breeder reactor; fuel pin deformations; irradiated FBR fuel assemblies; irradiated fuel assemblies; linear heat rating; nondestructive postirradiation examination; Assembly; Computed tomography; Fuels; Heating; Pins; Size measurement; X-ray imaging; Central void; X-ray computer tomography; fast breeder reactor; fuel pin deformation;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2010.2050491
Filename
5603486
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