Phase-field-lattice Boltzmann studies for dendritic growth with natural convection


Abstract:

Simulating dendritic growth with natural convection is challenging because of the size of the computational domain required when compared to the dendrite scale. In this study, a phase-field-lattice Boltzmann model was used to simulate dendritic growth in the presence of natural convection due to a difference in solute concentration. To facilitate and accelerate the large-scale simulation, a parallel computing code with multiple graphics processing units was developed. The effects of the computational domain size as well as those of gravity on the dendritic morphologies were examined by performing two-dimensional free dendritic growth simulations with natural convection. The effects of the gravity direction on the dendrite spacing and morphology were also investigated by simulating unidirectional solidification from multiple seeds.

Año de publicación:

2017

Keywords:

  • A1. Convection
  • A1. Crystal morphology
  • A1. Computer simulation
  • A1. Dendrites

Fuente:

scopusscopus
googlegoogle

Tipo de documento:

Article

Estado:

Acceso restringido

Áreas de conocimiento:

  • Dinámica de fluidos
  • Dinámica de fluidos

Áreas temáticas:

  • Ciencias de la computación