The simulation and experimental validation on gas-solid two phase flow in the riser of a dense fluidized bed
β Scribed by Xue-yao Wang; Fan Jiang; Xiang Xu; Sheng-dian Wang; Bao-guo Fan; Yun-han Xiao
- Publisher
- Springer-Verlag
- Year
- 2009
- Tongue
- English
- Weight
- 660 KB
- Volume
- 18
- Category
- Article
- ISSN
- 1003-2169
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π SIMILAR VOLUMES
Abstraet--A new approach to the modelling of gross gas-solids flow through the riser in a circulating fluidized-bed system is proposed in this paper. This approach differs from the previous ones, which are found to be theoretically incorrect based on a fundamental analysis of the riser process hydro
Radial solids velocity profiles were computed on seven axial levels in the riser of a high-flux circulating fluidized bed (HFCFB) using a twophase 3-D computational fluid dynamics model. The computed solids velocities were compared with experimental data on a riser with an internal diameter of 76 mm
An experimental and theoretical study was conducted to identify the flow behavior of gas and particulates in the freeboard of a gas-fluidized bed. The axial velocity and turbulence intensity distributions were measured along the centerline and across the freeboard. A laser Doppler velocimeter (LDV)
## Abstract The gas/solid flow characteristics in a circulating fluidized bed with two different inlet configurations were investigated by numerical simulation based on an Eulerian approach. In order to describe the interaction between the gas phase and the solid phase and the influence of the soli