Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7968302 | Journal of Nuclear Materials | 2014 | 33 Pages |
Abstract
Clad corrosion being one of the factors limiting the life of a mixed-oxide fast reactor fuel element pin at high burn-up, some aspects known about the key elements (oxygen, cesium, tellurium, iodine) in the clad-attack are discussed and many Fuel-Clad-Chemical-Interaction (FCCI) models available in the literature are also discussed. Based on its relatively superior predictive ability, the HEDL (Hanford Engineering Development Laboratory) relation is recommended: d/μm = ({0.507 â
 [B/(at.% fission)] â
 (T/K-705) â
 [(O/M)i-1.935]} + 20.5) for (O/M)i ⩽ 1.98. A new model is proposed for (O/M)i ⩾ 1.98: d/μm = [B/(at.% fission)] â
 (T/K-800)0.5 â
 [(O/M)i-1.94] â
 [P/(W cmâ1)]0.5. Here, d is the maximum depth of clad attack, B is the burn-up, T is the clad inner surface temperature, (O/M)i is the initial oxygen-to-(uranium + plutonium) ratio, and P is the linear power rating. For fuels with [n(Pu)/n(M = U + Pu)] > 0.25, multiplication factors f are recommended to consider the potential increase in the depth of clad-attack.
Related Topics
Physical Sciences and Engineering
Energy
Nuclear Energy and Engineering
Authors
R. Viswanathan,