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JOURNALS // Prikladnaya Mekhanika i Tekhnicheskaya Fizika // Archive

Prikl. Mekh. Tekh. Fiz., 2020 Volume 61, Issue 3, Pages 129–139 (Mi pmtf325)

This article is cited in 1 paper

Diffusiophoresis and photophoresis of heated large nonvolatile aerosol spherical particles

N. V. Malaya, E. R. Shchukinb, Z. L. Shulimanovac, D. N. Efimtsevaa

a National Research University "Belgorod State University", Belgorod, 308007, Russia
b Joint Institute for High Temperatures (JIHT), Moscow, 125412, Russia
c Russian University of Transport, Moscow, 127994, Russia

Abstract: This paper describes a theoretical study of the steady motion of a large solid nonvolatile aerosol spherical particle, which contains thermal sources within itself, in a concentration gradient of binary gas mixture components. It is assumed that an average particle surface temperature significantly differs from the temperature of the binary gas mixture surrounding it. Equations of gas dynamics are solved taking into account the power-law dependence of the molecular transfer coefficients (viscosity, thermal conductivity, and diffusion) and the density of the gaseous medium on temperature. Under boundary conditions, diffusion and thermal slip are taken into account. Numerical estimates show that the diffusion and photophoretic forces and velocity substantially depend on the average particle surface temperature.

Keywords: diffusiophoresis and photophoresis, heated large nonvolatile spherical particles.

UDC: 533.72; 532

Received: 18.09.2019
Revised: 02.12.2019
Accepted: 23.12.2019

DOI: 10.15372/PMTF20200314


 English version:
Journal of Applied Mechanics and Technical Physics, 2020, 61:3, 426–435

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