Numerical simulation of flow behavior of particles and clusters in riser using two granular temperatures
โ Scribed by Huilin Lu; Shuyan Wang; Yurong He; Jianmin Ding; Guodong Liu; Zhenhua Hao
- Publisher
- Elsevier Science
- Year
- 2008
- Tongue
- English
- Weight
- 858 KB
- Volume
- 182
- Category
- Article
- ISSN
- 0032-5910
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โฆ Synopsis
Cluster in CFB riser significantly affects performance of circulating fluidized beds. To model hydrodynamic behavior in CFB risers, three phase flows were assumed in the riser, the gas phase, the dispersed particle phase, and the clusters phase. The gas-solid multi-fluid model is extended to give the macroscopic averaged equations with constitutive equations for both particle phases from kinetic theory of granular flow. The clusters and the dispersed particles have their own fluctuating energy or two individual granular temperatures. Interactions between the cluster and its surrounding dispersed particles were obtained from kinetic theory of granular flow. Drag force for gas to dispersed particles and the clusters are empirically determined. The momentum exchange between dispersed particles and clusters is modeled using the concept of molecular dynamics. Cluster properties are predicted with the cluster-based approach. The distributions of volume fractions and velocities of gas, dispersed particles and clusters are predicted. Computed solid mass fluxes and volume fractions agree with Manyele et al. [
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