INFLUENCE OF INTERNAL SOURCES AND SINKS OF HEAT ON HEAT EXCHANGE OF ELECTRICALLY CONDUCTIVE LIQUID IN THE SPHERICAL LAYER

S.V. Solovjov, T.S. Solovjova
DOI: 10.25699/SSSB.2020.29.56920 Download PDF
Abstract: The results of numerical simulation of unsteady convective heat transfer of an electrically conductive fluid in a spherical layer under boundary conditions for a temperature of the first kind and in the presence of internal heat sources and sinks are presented. The influence of internal heat sources and sinks on the evolution of the structure of a fluid flow, temperature field, magnetic induction, and the distribution of Nusselt numbers in a strong magnetic field is investigated.
Index terms: mathematical modeling, non-stationary heat transfer, magnetic hydrodynamics, internal heat sources and sinks, spherical layer.

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