Abstract:
The work presents the task statement, the numerical solution method and the description of
the test calculation case for modeling the melt flow in the problem of crystal growth by the
Chochralsky method. The mathematical model is based on regularized or quasi-hydrodynamic equations to describe the currents of a viscous, non-compressible thermally conductive fluid. The numerical algorithm is implemented on the basis of the OpenFOAM
package within the mulesQHDFoam solver. The proposed approach allows calculations of
non-stationary three-dimensional flow in a crucible with a given geometry for high numbers Reynolds and Grashoff. As an example, the results of calculating the flow in a simplified configuration crucible are given. An asymmetric transient flow is obtained.