Generalized transport model for phase transition with memory |
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Authors: | Chi Chen Francesco Ciucci |
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Affiliation: | 1. Department of Mechanical and Aerospace Engineering, HKUST, Hong Kong, China;2. Department of Chemical and Biomolecular Engineering, HKUST, Hong Kong, China |
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Abstract: | A general model for phenomenological transport in phase transition is derived, which extends Jäckle and Frisch model of phase transition with memory and the Cahn–Hilliard model. In addition to including interfacial energy to account for the presence of interfaces, we introduce viscosity and relaxation contributions, which result from incorporating memory effect into the driving potential. Our simulation results show that even without interfacial energy term, the viscous term can lead to transient diffuse interfaces. From the phase transition induced hysteresis, we discover different energy dissipation mechanism for the interfacial energy and the viscosity effect. In addition, by combining viscosity and interfacial energy, we find that if the former dominates, then the concentration difference across the phase boundary is reduced; conversely, if the interfacial energy is greater then this difference is enlarged. |
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Keywords: | Phase transition Memory effect Cahn&ndash Hilliard Hysteresis |
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