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 accoun
[[abstract]]©2001 Elsevier - The thermophoretic motion of a spherical aerosol particle arbitrarily s...
The velocity of thermal repulsion of large aerosol particles has been calculated by others by equati...
International audienceWe discuss a new phenomenon of turbulent thermal diffusion associated with tur...
This paper considers the influence of motion of the medium (account of convective terms in the heat ...
A theoretical description of the steady-state motion of a large solid aerosol spherical particle mov...
Steady-state motion of a moderately large solid aerosol spherical particle electromagnetically irrad...
The steady motion of a nonuniformly heated spherical aerosol particle through a viscous gaseous medi...
The steady motion of a spheroidal aerosol particle with inner nonuniformly distributed heat sources ...
.Small particles suspended in non-isothermal gas and/or in an isothermal gas mixture with concentrat...
Steady motion of spheroidal aerosol particle with inner nonuniformly distributed heat sources that ...
The thermophoresis of a spheroidally shaped aerosol particle at small relative temperature differenc...
Measurements of thermo- and diffusio-phoretic velocities of aerosol particles (carnauba wax, paraffi...
This thesis describes both theoretical and experimental studies of diffusiophoresis, which is the mo...
The study deals with photophoresis of a spherical micro-particle suspended in absorbing gaseous medi...
The Stokes and Hadamard-Rybchinsky formulas are generalized, making it possible to take into account...
[[abstract]]©2001 Elsevier - The thermophoretic motion of a spherical aerosol particle arbitrarily s...
The velocity of thermal repulsion of large aerosol particles has been calculated by others by equati...
International audienceWe discuss a new phenomenon of turbulent thermal diffusion associated with tur...
This paper considers the influence of motion of the medium (account of convective terms in the heat ...
A theoretical description of the steady-state motion of a large solid aerosol spherical particle mov...
Steady-state motion of a moderately large solid aerosol spherical particle electromagnetically irrad...
The steady motion of a nonuniformly heated spherical aerosol particle through a viscous gaseous medi...
The steady motion of a spheroidal aerosol particle with inner nonuniformly distributed heat sources ...
.Small particles suspended in non-isothermal gas and/or in an isothermal gas mixture with concentrat...
Steady motion of spheroidal aerosol particle with inner nonuniformly distributed heat sources that ...
The thermophoresis of a spheroidally shaped aerosol particle at small relative temperature differenc...
Measurements of thermo- and diffusio-phoretic velocities of aerosol particles (carnauba wax, paraffi...
This thesis describes both theoretical and experimental studies of diffusiophoresis, which is the mo...
The study deals with photophoresis of a spherical micro-particle suspended in absorbing gaseous medi...
The Stokes and Hadamard-Rybchinsky formulas are generalized, making it possible to take into account...
[[abstract]]©2001 Elsevier - The thermophoretic motion of a spherical aerosol particle arbitrarily s...
The velocity of thermal repulsion of large aerosol particles has been calculated by others by equati...
International audienceWe discuss a new phenomenon of turbulent thermal diffusion associated with tur...