Modeling fluid‐solid thermomechanical interactions in casting processes
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Publication:5315671
DOI10.1108/09615530410513791zbMath1103.80302OpenAlexW2020726783MaRDI QIDQ5315671
Roland W. Lewis, Diego J. Celentano, Marcela A. Cruchaga
Publication date: 9 September 2005
Published in: International Journal of Numerical Methods for Heat & Fluid Flow (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1108/09615530410513791
Stefan problems, phase changes, etc. (80A22) Finite element methods applied to problems in fluid mechanics (76M10) Finite element, Galerkin and related methods applied to problems in thermodynamics and heat transfer (80M10)
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Cites Work
- A thermomechanical model for the analysis of light alloy solidification in a composite mould
- The effect of free-floating dendrites and convection on macrosegregation in direct chill cast aluminum alloys. I: Model development
- The effect of free-floating dendrites and convection on macrosegregation in direct chill cast aluminum alloys. II: Predictions for Al-Cu and Al-Mg alloys
- A model of microsegregation during binary alloy solidification.
- Phasewise numerical integration of finite element method applied to solidification processes
- A thermomechanical model with microstructure evolution for aluminium alloy casting processes
- A fixed‐mesh finite element thermally coupled flow formulation for the numerical analysis of melting processes
- Numerical Analysis of Thermally Coupled Flow Problems with Interfaces and Phase-change Effects
- Finite element simulation of metal casting
- Calculation of pressure in a mushy zone
- A discontinuous Galerkin model for precipitate nucleation and growth in aluminium alloy quench processes
- A finite element thermally coupled flow formulation for phase-change problems
- Computation of mould filling processes with a moving Lagrangian interface technique
- Finite element methods for flow problems with moving boundaries and interfaces
- A large strain thermoviscoplastic formulation for the solidification of S. G. cast iron in a green sand mould.
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