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A novel model of third phase inclusions on two phase boundaries

机译:两相边界上第三相夹杂物的新模型

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A new computationally efficient model of an included phase located at the interface between two other phases is developed by projecting the boundaries of the inclusion onto the boundary between the two other phases. This reduces the 3D problem to one on a 2D surface while still being embedded in 3D space, which significantly reduces computational expense of solving the system. The resulting model is similar to conventional phase-field models. The properties of the solution are examined, compared to classical theory, and the numerical behaviour, including a mesh sensitivity analysis, are discussed. The model accurately captures mesoscale effects, such as the Gibbs-Thompson effect, coarsening, and coalescence. An example application of the model simulating the evolution of grain boundary porosity in nuclear fuel is shown on a representative tetrakaidecahedron-shaped fuel grain.
机译:通过将包含物的边界投影到其他两个相之间的边界上,可以开发出位于两个其他相之间的界面的包含相的新的计算效率高的模型。这将3D问题减少到2D表面上的一个问题,同时仍被嵌入3D空间中,从而大大减少了解决系统的计算成本。所得模型与常规相场模型相似。与经典理论相比,研究了该解的性质,并讨论了包括网格敏感度分析在内的数值行为。该模型准确地捕获了中尺度效应,例如吉布斯-汤普森效应,粗化和合并。在具有代表性的四kai十二面体形燃料颗粒上显示了模拟核燃料中晶界孔隙度演变模型的示例应用。

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