Discrete element simulation of a flat-bottomed spouted bed in the 3-D cylindrical coordinate system

Discrete element simulation of a flat-bottomed spouted bed in the 3-D cylindrical coordinate system
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DOI:
10.1016/j.ces.2004.03.027
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发表时间:
2004-09
影响因子:
4.7
通讯作者:
S. Takeuchi;Shan Wang;M. Rhodes
S. Takeuchi;Shan Wang;M. Rhodes
中科院分区:
工程技术2区
文献类型:
--
作者:
S. Takeuchi;Shan Wang;M. Rhodes

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A discrete element method (DEM) simulation of three-dimensional conical-base spouted beds is presented. The overall height and diameter of the vessel are 0.5 and 0.15 m, respectively, and the nozzle diameter is 0.02 m. The inclined angle of the conical section varies from 0 to 60 degrees. The gas flow is described by the continuity and Navier–Stokes equations and solved by a finite difference method of second order accuracy in space and time. For gas–particle interaction, the Ergun equation (for void fraction smaller than 0.8) and the Wen-Yu model (for void fraction of 0.8 and above) are employed. A new method for treatment of the boundary condition for 3-D gas flow along the cone surface is proposed. This boundary condition satisfies both the continuity and momentum-balance requirements for the gas phase. Usefulness of the present simulation for studying gas flow pattern and particle motion in conical-base spouted beds is demonstrated. The effects of the inclined angle and draft tube on gas and particle flow in spouted beds are discussed.