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NUMERICAL SIMULATIONS OF HYDRODYNAMIC BEHAVIORS IN CONICAL SPOUTED BEDS

机译:锥形喷头中水动力行为的数值模拟

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摘要

The axial and radial distributions of static pressures and vertical particle velocities of conical spouted beds have been simulated and compared with experimental data. Simulation results show that, among all factors investigated, the Actual Pressure Gradient (the APG term) in conical spouted beds, introduced as the default gravity term plus an empirical axial solid phase source term, has the most significant influence on static pressure profiles, followed by the restitution coefficient and frictional viscosity, while other factors almost have no effect. Apart from the solid bulk viscosity, almost all other factors affect the radial distribution of the axial particle velocity, although the influence of the APG term is less significant. For complex systems such as conical spouted beds where a fluidized spout region and a defluidized annulus region co-exist, the new term introduced in this work can improve the CFD simulation. Furthermore, for other systems with the Actual Pressure Gradient different from either fluidized beds or packed beds, the new approach can also be applied.
机译:模拟了锥形喷射床的静压力的轴向和径向分布以及垂直颗粒速度,并与实验数据进行了比较。仿真结果表明,在研究的所有因素中,作为默认重力项加上经验轴向固相源项引入的锥形喷头床中的实际压力梯度(APG项)对静压力曲线的影响最大,其次是受回复系数和摩擦粘度的影响,而其他因素几乎没有影响。除了固相体积粘度,几乎所有其他因素也会影响轴向粒子速度的径向分布,尽管APG术语的影响较小。对于复杂的系统,例如锥形喷床,其中流化的喷口区域和流化的环空区域共存,在这项工作中引入的新术语可以改善CFD模拟。此外,对于其他实际压力梯度不同于流化床或填充床的系统,也可以采用新方法。

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