An enthalpy-based model of dendritic growth in a convecting binary alloy melt
From MaRDI portal
Publication:2967069
DOI10.1108/HFF-05-2011-0106zbMath1356.80033MaRDI QIDQ2967069
Anirban Bhattacharya, Pradip Dutta
Publication date: 28 February 2017
Published in: International Journal of Numerical Methods for Heat & Fluid Flow (Search for Journal in Brave)
Related Items (5)
An enthalpy method for modeling eutectic solidification ⋮ Three-dimensional sharp and conservative VOF method for the simulation of binary solidification ⋮ An enthalpy-based model of dendritic growth in a convecting binary alloy melt ⋮ Modelling and simulation of heat conduction in 1-D polar spherical coordinates using control volume-based finite difference method ⋮ CFD simulations of transport phenomena during transcritical flow of real fluid (CO2) within ejector
Cites Work
- Unnamed Item
- Unnamed Item
- A continuum model for momentum, heat and species transport in binary solid-liquid phase change systems. I. Model formulation. II. Application to solidification in a rectangular cavity
- Numerical simulation of dendritic solidification with convection: three-dimensional flow.
- Modeling melt convection in phase-field simulations of solidification
- A phase-field model of solidification with convection
- An enthalpy method for modeling dendritic growth in a binary alloy
- A level set simulation of dendritic solidification with combined features of front-tracking and fixed-domain methods
- An enthalpy-based model of dendritic growth in a convecting binary alloy melt
- The effect of solutal undercooling on double-diffusive convection and macrosegregation during binary alloy solidification: a numerical investigation
- Quantitative phase-field modeling of dendritic growth in two and three dimensions
This page was built for publication: An enthalpy-based model of dendritic growth in a convecting binary alloy melt