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CFD ANALYSIS OF A FLUIDIZED BED REACTOR FOR INDUSTRIAL APPLICATION

机译:工业化流化床反应器的CFD分析

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The fluidized bed reactors are widely used in chemical, mining and pharmaceutical industries and energy applications because of the low pressure drop, the uniform distribution of temperature and of high-speed mass transfer of energy and speed. Fluidization behavior depends on the reactor geometry and internals as well as the particle size distribution and physical properties of the process material. This paper presents a 3D fluid dynamic simulation of a fluidized bed reactor for the pharmaceutical processing of powder, such as mixing, granulation and drying. Firstly, sensitivity analyses based on a literature test-case were performed, for the validation of the computational model and the development of the additional components required for the simulation of a real fluidized bed reactor. Then an unsteady URANS 3D simulation of a modular laboratory-scale fluid bed reactor, product of IMA S.p.A. Active Division, was performed to evaluate the velocity field and particle distribution of the powder involved in the mixing process.
机译:由于低压降,温度的均匀分布以及能量和速度的高速传质,流化床反应器被广泛用于化学,采矿和制药行业以及能源应用。流化行为取决于反应器的几何形状和内部结构以及工艺材料的粒径分布和物理性质。本文介绍了流化床反应器的3D流体动力学仿真,该过程用于粉末的药物处理,例如混合,制粒和干燥。首先,基于文献测试用例进行了敏感性分析,以验证计算模型并开发模拟实际流化床反应器所需的其他组件。然后,对IMA S.p.A. Active Division产品的模块化实验室规模流化床反应器进行了非稳态URANS 3D仿真,以评估混合过程中粉末的速度场和颗粒分布。

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