Three-dimensional sharp and conservative VOF method for the simulation of binary solidification
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Publication:6095129
DOI10.1016/j.jcp.2023.112380MaRDI QIDQ6095129
Zhong-Han Xue, Jie Zhang, Ming-Jiu Ni, Shuo Zhao
Publication date: 27 November 2023
Published in: Journal of Computational Physics (Search for Journal in Brave)
Basic methods in fluid mechanics (76Mxx) Numerical methods for partial differential equations, initial value and time-dependent initial-boundary value problems (65Mxx) Thermodynamics and heat transfer (80Axx)
Cites Work
- A coupled VOF-IBM-enthalpy approach for modeling motion and growth of equiaxed dendrites in a solidifying melt
- A volume-of-fluid method with interface reconstruction for ice growth in supercooled water
- An accurate adaptive solver for surface-tension-driven interfacial flows
- A level set simulation of dendritic solidification of multi-component alloys
- Numerical simulation of dendritic solidification with convection: Two-dimensional geometry
- Conservative volume-of-fluid method for free-surface simulations on Cartesian-grids
- Technical note. A similarity solution for solidification of an under-cooled binary alloy
- Crystal growth and dendritic solidification
- A Cartesian grid embedded boundary method for Poisson's equation on irregular domains
- Removing the stiffness from interfacial flows with surface tension
- A simple level set method for solving Stefan problems
- Gerris: A tree-based adaptive solver for the incompressible Euler equations in complex geometries.
- Numerical simulation of dendritic solidification with convection: three-dimensional flow.
- A cellular automaton -- finite volume method for the simulation of dendritic and eutectic growth in binary alloys using an adaptive mesh refinement
- Variational algorithms and pattern formation in dendritic solidification
- Computation of solid-liquid phase fronts in the sharp interface limit on fixed grids
- A second-order projection method for the incompressible Navier-Stokes equations
- Numerical simulation of melting in two-dimensional cavity using adaptive grid
- A front-tracking method for dendritic solidification
- A two-grid adaptive volume of fluid approach for dendritic solidification
- A sharp numerical method for the simulation of Stefan problems with convective effects
- A hybrid level-set / embedded boundary method applied to solidification-melt problems
- Solving elliptic interface problems with jump conditions on Cartesian grids
- A hybrid VOF-IBM method for the simulation of freezing liquid films and freezing drops
- A stable and accurate scheme for solving the Stefan problem coupled with natural convection using the immersed boundary smooth extension method
- Boiling and evaporation model for liquid-gas flows: a sharp and conservative method based on the geometrical VOF approach
- Conservative finite volume method on deforming geometries: the case of protein aggregation in dividing yeast cells
- A sharp computational method for the simulation of the solidification of binary alloys
- A quadtree-adaptive multigrid solver for the Serre-Green-Naghdi equations
- An enthalpy method for modeling dendritic growth in a binary alloy
- Sharp interface Cartesian grid method. III: Solidification of pure materials and binary solutions
- A Cartesian grid embedded boundary method for the heat equation and Poisson's equation in three dimensions
- A level set simulation of dendritic solidification with combined features of front-tracking and fixed-domain methods
- A volume of fluid approach for crystal growth simulation
- Theory of Solidification
- An enthalpy-based model of dendritic growth in a convecting binary alloy melt
- Rayleigh–Bénard convection with a melting boundary
- How the growth of ice depends on the fluid dynamics underneath
- Improved phase-field models of melting and dissolution in multi-component flows
- Morphology evolution of a melting solid layer above its melt heated from below
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