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An investigation of the hydrodynamic similarity of single-spout fluidized beds using CFD-DEM simulations

机译:CFD-DEM仿真对单嘴流化床流体动力相似性的研究

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摘要

The applicability of the hydrodynamic similarity criteria (scaling law) introduced by Glicksman (1988) was investigated using fully coupled Computational Fluid Dynamics and Discrete Element Method (CFD-DEM) simulations for single-spout fluidized beds. Four test cases were performed to investigate the scaling law in a pseudo-2D spouted-fluidized bed. In addition, the applicability of Glicksman's scaling law for simulating 3D fluidized beds was studied. In all simulations, characteristic dimensionless groups, i.e. the Reynolds number (Re), Froude number (Fr), particle-to-fluid density, bed initial height to particle diameter and bed width to particle diameter were kept constant for the both base and scaled cases. Comparing the time averaged particle velocities, gas velocities and volume fractions between the base and scaled cases indicated a very good overall hydrodynamic similarity for all test cases. A minor discrepancy observed between the simulation results of the base and scaled cases was explained by a force analysis.
机译:使用完全耦合的计算流体动力学和离散元件(CFD-DEM)模拟来研究Glicksman(1988)引入的流体动力相似性标准(缩放法)的适用性,用于单嘴流化床。进行四种测试案例以研究伪2D喷出流化床中的缩放法。此外,研究了GLICKSMAN的模拟3D流化床的扩展法的适用性。在所有模拟中,特征无量纲基团,即雷诺数(RE),FRoude号(FR),粒子流体密度,粒径高度和床宽到粒径的初始高度对底座保持恒定,并缩放案件。比较碱基和缩放病例之间的时间平均颗粒速度,气体速度和体积分数表明所有测试用例的总体流体动力学相似度非常好。通过力分析解释了基础和缩放病例的模拟结果之间观察到的次要差异。

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