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CONVECTIVE HEAT TRANSFER OF A LIQUID IN A SPHERICAL LAYER. PART II
Solovjov Sergei Viktorovich1, Czoj Rudolf Irsunovich2, Ryajsyanen Tat‘yana Nikolaevna3
1Pacific National University, Khabarovsk, Sholom-Aleichem PriAmursky State University, Birobidzhan, Khabarovsk state University of Economics and law, Khabarovsk, Doctor of Physical and Mathematical Sciences, Professor
2Sholom-Aleichem PriAmursky State University, Birobidzhan, PhD in Technical Science, Assistant Professor
3Pacific National University, Khabarovsk, senior lecturer
1Pacific National University, Khabarovsk, Sholom-Aleichem PriAmursky State University, Birobidzhan, Khabarovsk state University of Economics and law, Khabarovsk, Doctor of Physical and Mathematical Sciences, Professor
2Sholom-Aleichem PriAmursky State University, Birobidzhan, PhD in Technical Science, Assistant Professor
3Pacific National University, Khabarovsk, senior lecturer
Abstract
The results of numerical modeling of convective heat transfer of an electroconductive liquid between isothermal concentric spheres are considered. The effect of Joule dissipation and the Prandtl number on the heat transfer and magnetic hydrodynamics of a fluid is investigated.
Keywords: a spherical layer, convective heat transfer, magneto hydrodynamics, modeling
Category: 01.00.00 Physics and mathematics
Article reference:
Convective heat transfer of a liquid in a spherical layer. Part II // Modern scientific researches and innovations. 2017. № 4 [Electronic journal]. URL: https://web.snauka.ru/en/issues/2017/04/81866

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