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Numerical simulation on distribution characteristics of flexible filamentous particles in a fluidized bed dryer

机译:流化床干燥机中柔性丝状颗粒分布特性的数值模拟

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Distribution characteristics of flexible filamentous particles are investigated in a fluidized bed dryer. The gas- solid two-phase flow in the riser was simulated by Euler-Lagrange method to capture fluidization behavior. Namely, the air flow was defined as continuous phase and the individual flexible filamentous particle was simulated with the chain model. Then the dynamic characteristics of particle distribution in the riser were inyestigat-ed numerically and experimentally, and the influences of fluidization parameters on particle distribution characteristics were discussed in detail. The research results show that the distribution of flexible filamentous particles in the riser is not uniform, and the formation and development of local regions with higher particle concentration or particle clusters could be found. Furthermore, the gas flow rate and the material flow rate have profound influence on the fluidization behavior and the distribution characteristics of particles. The simulation results are consistent with the experimental findings. Therefore, the simulation model is valid to predict the dynamic behavior of flexible filamentous particles.
机译:在流化床干燥器中研究了柔性丝状颗粒的分布特性。通过Euler-Lagrange方法模拟立管中的气固两相流,以捕获流化行为。即,将气流定义为连续相,并用链模型模拟单个柔性丝状颗粒。然后对立管中颗粒分布的动态特性进行了数值和实验的实例化,并详细讨论了流化参数对颗粒分布特性的影响。研究结果表明,提升管中的柔性丝状颗粒分布不均匀,并且可以发现较高浓度或颗粒团簇的局部区域的形成和发展。此外,气体流速和材料流速对流化行为和颗粒的分布特性具有深远的影响。仿真结果与实验结果一致。因此,该仿真模型对于预测柔性丝状颗粒的动力学行为是有效的。

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