Article ID Journal Published Year Pages File Type
7968465 Journal of Nuclear Materials 2014 16 Pages PDF
Abstract
Cluster dynamics has proved to be a useful technique to simulate the microstructure evolution under irradiation over long time scales, especially when rate equations are solved in a deterministic way. However, when the number of equations is large, which is the case when solute atoms are present in addition to self-defects, the numerical solving can become difficult. We show how it is possible to seamlessly couple rate equations to the Fokker-Planck equation, and to increase significantly the efficiency of the numerical algorithms. We apply these methods to the case of helium implantation in α-iron, followed by annealing at high temperature to analyze the effect of surfaces on the coarsening of bubbles.
Related Topics
Physical Sciences and Engineering Energy Nuclear Energy and Engineering
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