Phase-field computations of anisotropic ice crystal growth on a spherical surface

  • Lee, Chaeyoung
  • Yoon, Sungha
  • Park, Jintae
  • Kim, Hyundong
  • Li, Yibao
  • ... Jeong, Darae
  • 외 3명
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초록

In this paper, we present a numerical method for the phase-field model of anisotropic ice crystal growth on a spherical surface. The mathematical model includes terms related to the anisotropic interfacial energy, which is defined by the interface angle with respect to a reference angle. One of the natural numerical methods on curved surfaces is a computational technique based on a triangular mesh for the surface in a three-dimensional space. However, it is difficult to compute terms with the interface angle on a triangular mesh. To resolve this problem, we solve the governing equation in Cartesian coordinates after rotating each vertex and the 1-ring neighborhood of the vertex on the triangular mesh. After rotation and interpolation, we numerically solve the phase-field model using a standard finite difference method. We present the results of several tests to demonstrate that the proposed algorithm can recover anisotropic ice crystal growth on a spherical surface.

키워드

Ice crystal growthPhase-field modelSpherical surfaceCAHN-HILLIARD EQUATIONDENDRITIC GROWTHNUMERICAL-METHODMODELSOLIDIFICATIONSCHEMESYMMETRYFLOW
제목
Phase-field computations of anisotropic ice crystal growth on a spherical surface
저자
Lee, ChaeyoungYoon, SunghaPark, JintaeKim, HyundongLi, YibaoJeong, DaraeKim, SangkwonKwak, SoobinKim, Junseok
DOI
10.1016/j.camwa.2022.08.035
발행일
2022-11-01
유형
Article
저널명
Computers and Mathematics with Applications
125
페이지
25 ~ 33