A new approach to the correlation of boundary layer mass transfer rates with thermal diffusion and/or variable properties
Abstract
A rational approach to the correlation of boundary layer mass transport rates, applicable to many commonly encountered laminar flow conditions with thermal diffusion and/or variable properties, is outlined. The correlation scheme builds upon already available constant property blowing/suction solutions by introducing appropriate correction factors to account for the additional ('pseudo' blowing and source) effects identified with variable properties and thermal diffusion. Applications of the scheme to the particular laminar boundary layer mass transfer problems considered herein (alkali and transition metal compound vapor transport) indicates satisfactory accuracy up to effective blowing factors equivalent to about one third of the 'blow off' value. As a useful by-product of the variable property correlation, we extend the heat-mass transfer analogy, for a wide range of Lewis numbers, to include variable property effects.
- Publication:
-
International Journal of Heat and Mass Transfer
- Pub Date:
- September 1979
- Bibcode:
- 1979IJHMT..22.1281S
- Keywords:
-
- Boundary Layer Equations;
- Correlation;
- Laminar Boundary Layer;
- Mass Transfer;
- Thermal Diffusion;
- Blowing;
- Laminar Flow;
- Lewis Numbers;
- Rates (Per Time);
- Transition Metals;
- Vapor Phases;
- Fluid Mechanics and Heat Transfer