Numerical study of swirl properties of rotating conical channel with axialflow

Citation
Mn. Noui-mehidi et al., Numerical study of swirl properties of rotating conical channel with axialflow, J CHEM EN J, 32(6), 1999, pp. 732-741
Citations number
16
Categorie Soggetti
Chemical Engineering
Journal title
JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
ISSN journal
00219592 → ACNP
Volume
32
Issue
6
Year of publication
1999
Pages
732 - 741
Database
ISI
SICI code
0021-9592(199912)32:6<732:NSOSPO>2.0.ZU;2-P
Abstract
This work is concerned with a numerical study of the laminar flow of a visc ous fluid between two coaxial cones, with the inner one rotating on which a constant axial flow is imposed. The two cones have the same apex angle val ue, so that the gap width between them is constant. Two configurations of t he same volume are studied: (i) divergent flow passage (Div) and (ii) conve rgent flow passage (Cov), which represents geometrically the reverse case o f (i). Analysis with the aid of the boundary layer assumptions is carried o ut by the use of an implicit finite difference method. A coordinate transfo rmation is applied to the governing equations in order to remove the explic it effect of the apex angle from the calculation process for both cases, so that the boundary conditions can be simplified. The swirl characteristics are studied in both configurations with regard to the same inlet flux and t he same rotation speed of the inner cone. The competition between centrifug al and axially-transporting effects in both cases is discussed. As a result , it is found that the swirl increases in Div from the entrance for a fixed value of the apex angle, while the swirl evolution in Cov depends strongly on the apex angle value.