Published October 2000 | Version v1
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Behaviour of high O/U fuel

  • 1. GE Nuclear Energy, Vallecitos Nuclear Center, CA (United States)

Description

Full text: The effect of increased fuel oxygen potential on fuel behaviour has been studied by fabricating and irradiating urania fuel with an average O/U ratio of 2.05. The fuel was fabricated by re-sintering standard urania pellets in a controlled oxygen potential environment and irradiated in a segmented rod bundle in a U.S. BWR. Preirradiation ceramographic characterization of the pellets revealed the well-known Widmanstaetten precipitation of U-409 platelets in the UO2 matrix. The high O/U fuel pellets were clad in Zircaloy-2 and irradiated to over 20 GWd/MT. Ramp tests were performed in a test reactor and detailed postirradiation examinations of both ramped and nonramped rods have been performed. The cladding inner surface condition, fission gas release and swelling behavior of high O/U fuel have been characterized and compared with standard UO2 pellets. Although fuel microstructural features in ramp-tested high O/U fuel showed evidence of higher fuel temperatures and/or enhanced transport processes, fission gas release to the fuel rod free space was less than for similarly tested standard UO2 fuel. However, fuel swelling and cladding strains were significantly greater. In spite of high cladding strains, PCI crack propagation was inhibited in the high O/U fuel I rods. Evidence is presented that the crystallographically oriented etch features often noted in peripheral regions of high burnup fuels are not an indication of higher oxides of uranium. (author)

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Part of:
Fuel chemistry and pellet-clad interaction related to high burnup fuel. Proceedings of the technical committee

Additional details

Publishing Information

Imprint Title
Fuel chemistry and pellet-clad interaction related to high burnup fuel. Proceedings of the technical committee
Imprint Pagination
205 p.
Journal Page Range
p. 35
ISSN
1011-4289
Report number
IAEA-TECDOC--1179

Conference

Title
Technical committee on fuel chemistry and pellet-clad interaction related to high burnup fuel
Dates
7-10 Sep 1998
Place
Nykoeping (Sweden)

Optional Information

Notes
The full paper of this presentation has been published in the Journal of Nuclear Materials, Vol. 270 (1999), 87-95