International Journal for Numerical Methods in Engineering · 1999 · 38 citations · 26 references
Numerical AnalysisPhase TransitionsEngineeringMechanical EngineeringMaterial SimulationSimulationAdvanced ManufacturingComputer-aided DesignComputational MechanicsSpline InterpolationSolid ModelingNumerical SimulationDirectional Solidification ProcessesModeling And SimulationSolidificationDeformation ModelingBoundary Element MethodPhase-change ProcessesSolid MechanicsHeat TransferPhase-change MaterialFinite Element TechniqueNumerical MethodsFinite Element MethodPhase EquilibriumProcess ControlBusinessThermal Engineering
This paper focuses on the numerical simulation of phase-change processes using a moving finite element technique. In particular, directional solidification and melting processes for pure materials and binary alloys are studied. The melt is modelled as a Boussinesq fluid and the transient Navier–Stokes equations are solved simultaneously with the transient heat and mass transport equations as well as the Stefan condition. The various streamline-upwind/Petrov–Galerkin-based FEM simulators developed for the heat, flow and mass transport subproblems are reviewed. The use of classes, virtual functions and smart pointers to represent and link the particular simulators in order to model a phase change process is discussed. The freezing front is modelled using a spline interpolation, while the mesh motion is defined from the freezing front motion using a transfinite mapping technique. Various two- and three-dimensional numerical tests are analysed and discussed to demonstrate the efficiency of the proposed techniques. Copyright © 1999 John Wiley & Sons, Ltd.
26
Herbert E. Huppert, J. S. Turner · Journal of Fluid Mechanics · 1981 · 593 citations