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Zhurnal Tekhnicheskoi Fiziki, 2016 Volume 86, Issue 3, Pages 8–19 (Mi jtf6597)

This article is cited in 8 papers

Theoretical and Mathematical Physics

Calculation of the effective thermal conductivity of powders formed by spherical particles in a gaseous atmosphere

T. S. Volchenko, A. P. Yalovetz

South Ural State University, Chelyabinsk

Abstract: We describe a method for calculating the effective thermal conductivity of powders formed by spherical particles with a size exceeding 1$\mu$m in a gaseous atmosphere in wide ranges of temperatures and pressures. We take into account the structural factor of the powder medium, adsorption of gas on the surface of solid spheres, the temperature dependences of the thermal conductivities of the powder components, and the formation of melt necks between the spheres after the attainment of the melting point. In the case of complete melting of the spheres, we propose a model for thermal conductivity of the melt with gas inclusions. The results of calculation of the effective thermal conductivity are in good agreement with experimental data.

Keywords: Thermal Conductivity, Thermal Resistance, Heat Mass Transf, Condensed Phase, Effective Thermal Conductivity.

Received: 14.04.2015
Revised: 27.07.2015


 English version:
Technical Physics, 2016, 61:3, 324–336

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