Numerical study of the drag on a fluid sphere
β Scribed by A. Saboni; S. Alexandrova
- Publisher
- American Institute of Chemical Engineers
- Year
- 2002
- Tongue
- English
- Weight
- 107 KB
- Volume
- 48
- Category
- Article
- ISSN
- 0001-1541
No coin nor oath required. For personal study only.
β¦ Synopsis
of the basic phenomena involved between a fluid sphere and an external flow is important to the understanding of many liquidαliquid, solidαliquid, and gasαliquid systems in chemical and biochemical processing, environmental engineering, and minerals refining.
The flow structure depends on the fluid-particle Reynolds Ε½ . number, on the viscosity ratio s r , and on the dend c Ε½ . sity ratio β₯ s r between the dispersed phase and the d c
π SIMILAR VOLUMES
The accuracy of calculating the normal modes in the numerical linear stability study of two-dimensional nondivergent viscous flows on a rotating sphere is analyzed. Discrete spectral problems are obtained by truncating Fourier's series of the spherical harmonics for both the basic flow and the distu
Motion in an isothermal continuum is described by the equations of continuity and of motion:\* p [ -$ + uj U i , 5 ] = p" -7,ji5 + P f i \* For I1 in spherical coordinates see (4, p. 91 ).
A numerical study was conducted to analyse the e!ect of #ow distribution of stirred part and plug #ow part on combustion e$ciency at the coal gasi"cation process in an entrained bed coal reactor. The model of computation was based on gas-phase Eulerian balance equations of momentum and mass. The sol