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Experimental and CFD Simulation Studies of Circulating Fluidized Bed Riser in the Fast Fluidization Regime

机译:快速流化制度循环流化床提升机的实验和CFD仿真研究

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Hydrodynamics of gas-solid in the fast fluidization regime were investigated by a combination of experiment and computational fluid dynamics (CFD) simulations. A two-dimensional (2D) numerical simulation of gas-solids flow in a circulating fluidized bed riser was performed based on the two-fluid model (TFM). The effect of some essential parameters, namely, specularity coefficient (Φ), and particle-particle restitution coefficient (e_(ss)), was examined for one set of operating condition. A range of specularity coefficients from 0.1 to 0.0001 were investigated. When specularity coefficient is set to values of 0.001 and above gives axial solid holdup profiles that reasonably agree with the experimental data. It was found that the specularity coefficient has substantial effect on bulk flow. Moreover, the effect of the elasticity of particle collisions showed that the high particle-particle restitution coefficients gave good quantitative agreement. Further extensive validations were carried out to investigate the validity of screened model parameters for different solid circulation rate and gas velocity. Simulation results for different operating condition were able to predict the qualitative trend. Although the model under-predicted the solid holdup at a high solid circulation rate, but was able to capture axial heterogeneity. The 2D results presented in this work will provide a useful basis for the future 3D simulation work of a current CFB system.
机译:通过实验和计算流体动力学(CFD)模拟的组合研究了快速流化制度中的气体固体的流体动力学。基于双流体模型(TFM)进行循环流化床提升管中的天然气流量的二维(2D)数值模拟。对一组操作条件检查了一些基本参数,即镜面系数(φ)和粒子恢复系数(E_(SS))的影响。研究了0.1至0.0001的一系列镜面系数。当镜面系数设定为0.001且以上的值时,给出轴向固体储存轮廓,与实验数据合理地同意。发现镜面系数对散装流量具有很大的影响。此外,颗粒碰撞弹性的影响表明,高颗粒粒子恢复系数得到了良好的定量协议。进行了进一步的广泛验证,以研究筛选模型参数对不同的固体循环速率和气体速度的有效性。不同操作条件的仿真结果能够预测定性趋势。虽然模型以高固体循环速率预测固体储存,但能够捕获轴向异质性。本工作中提供的2D结果将为当前CFB系统的未来3D模拟工作提供一种有用的基础。

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