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Simulation of dendritic crystal growth with thermal convection - MaRDI portal

Simulation of dendritic crystal growth with thermal convection (Q1971108)

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scientific article; zbMATH DE number 1421567
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Simulation of dendritic crystal growth with thermal convection
scientific article; zbMATH DE number 1421567

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    Simulation of dendritic crystal growth with thermal convection (English)
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    20 November 2000
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    Summary: The dendritic growth of crystals under gravity influence shows a strong dependence on convection in the liquid. The situation is modelled by the Stefan problem with a Gibbs-Thomson condition coupled with the Navier-Stokes equations in the liquid phase. A finite element method for the numerical simulation of dendritic crystal growth including convection effects is presented. It consists of a parametric finite element method for the evolution of the interface, coupled with finite element solvers for the heat equation and Navier-Stokes equations in a time dependent domain. Results from numerical simulations in two space dimensions with Dirichlet and transparent boundary conditions are included.
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    dendritic solidification
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    crystal growth
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    convection
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    Gibbs-Thomson condition
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    Navier-Stokes equations
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    finite elements
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