首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Investigation of the complex gas-solids flow characteristics in a fluidized bed with a Wurster tube by process tomography and CFD simulation
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Investigation of the complex gas-solids flow characteristics in a fluidized bed with a Wurster tube by process tomography and CFD simulation

机译:通过工艺断层扫描和CFD仿真研究流化床中的复杂气体流动特性的调查

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A Wurster fluidized bed, widely used in the coating process of the pharmaceutical industry, is modeled to investigate the characteristics of gas-solids flow, concerning the effect of Wurster tube and operating parameters. Two main methods used in this research are computational fluid dynamic (CFD) simulation and electrical capacitance tomography (ECT) measurement. The CFD model is based on the kinetic theory of granular flow (KTGF). The drag model based on the energy-minimization multi-scale (EMMS) method is applied and compared with Wen-Yu and Gidaspow models. Key process parameters, including the solids volume fraction, solids velocity, bubble diameter and pressure drop, are analyzed and verified by the measurement results. Both the CFD simulation and ECT measurement results provide valuable information revealing the hydrodynamic characteristics in the dense-phase zone, and the combination of these two techniques provides a good method to investigate the flow field in Wurster fluidized beds. For the lab-scale Wurster fluidized bed, the results of Wen-Yu and Gidaspow drag models have a good agreement with the ECT measurement. The design of the Wurster tube has significant effects on the flow characteristics. To guarantee the solids circulation in the bed while avoiding the non-uniform coating or undesired agglomeration, optimized parameters of the tube geometric dimensions and fluidization conditions are chosen to improve the solids circulation efficiency and the product quality based on the CFD simulation and ECT measurement results. The sensitivity analysis gives the guiding direction for further optimization of a lab-scale Wurster fluidized bed. (C) 2019 Elsevier B.V. All rights reserved.
机译:广泛应用于制药工业的涂层过程的纬度流化床,被建模以研究气体固体流动的特点,涉及尿管和操作参数的效果。本研究中使用的两种主要方法是计算流体动态(CFD)模拟和电容断层扫描(ECT)测量。 CFD模型基于粒状流动(KTGF)的动力学理论。基于能量最小化多尺度(EMM)方法的阻力模型与文宇和GIDaspow模型进行了应用。通过测量结果分析并包括固体体积分数,固体体积分数,固体速度,气泡直径和压降的键工艺参数。 CFD仿真和ECT测量结果都提供了有价值的信息,揭示了致密相区域中的流体动力学特性,并且这两种技术的组合提供了研究Wurster流化床中的流场的良好方法。对于实验室规模的Wurster流化床,文宇和GIDaspow拖曳模型的结果与ECT测量有良好的一致性。纬管的设计对流动特性具有显着影响。为了保证床中的固体循环,同时避免不均匀的涂层或不希望的聚集,选择了管几何尺寸和流化条件的优化参数,以提高基于CFD仿真和物测量结果的固体循环效率和产品质量。灵敏度分析给出了用于进一步优化实验室规模的Wurster流化床的引导方向。 (c)2019年Elsevier B.V.保留所有权利。

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