Introduction to Phase-Field Model and Its Applications in the Fields of Crystal Growth and Planetary Science

Computer Science

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Crystal Growth From Melt, Crystallisation, Pattern Recognition, Solidification, Texture, Surface, Growth From Melts, Zone Melting And Refining, Constant-Composition Solid-Solid Phase Transformations: Polymorphic, Massive, And Order-Disorder, Pattern Formation In Reactions With Diffusion, Flow And Heat Transfer, Solidification, Cold Working, Work Hardening, Annealing, Post-Deformation Annealing, Quenching, Tempering Recovery, And Crystallization

Scientific paper

The growth of crystal induces a change of ambient environment (temperature, concentration, etc.), and the environmental change gives some feedback to the growth of crystal. The interaction between the crystal growth and ambient environment is important to be taken into consideration, also in the crystallization process of cosmic crystals observed in chondritic meteorites. In this lecture, we will introduce the phase-field simulation, which is one of the powerful numerical methods to treat the crystal growth and diffusion fields (temperature, concentration, etc.) simultaneously. Participants can experience some phase-field simulations on their own laptop by using a newly developed Java program, which will be distributed at the school.

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