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Design considerations for small scale rotating fluidized beds in static geometry with screens for fine particles

机译:用细粒子屏幕静态几何中旋转流化床的设计考虑因素

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摘要

Design of a small scale rotating fluidized bed (RFB) with diameter of 4–6cm to fluidize 40–80μm diameter particles was investigated using computational fluid dynamics (CFD). Simulations explored the impact of the following components on pressure drop and fluidized behavior of the device: particle size, particle density, outer diameter, solids loading, height, number of inlet slots, inlet slot width, angle of inlet slots, chimney diameter, chimney number of slots, chimney slot width, chimney slot angle, and position of the chimney relative to the inlets. Fluidized behavior was evaluated based on a “fluidization quality” metric yielding information about the distribution of particles in the device. Although additional work is required to elucidate design guidelines for small scale RFBs for fine particles, the initial designs evaluated in this work indicate potential for developing a fluidized bed of relatively small diameter, presenting opportunities for process intensification for numerous potential applications.
机译:使用计算流体动力学(CFD)研究了直径为4-6厘米的小型旋转流化床(RFB),以使40-80μm直径为40-80mm直径颗粒。仿真探讨了以下组件对装置的压降和流化行为的影响:粒度,粒子密度,外径,固体加载,高度,入口槽数,入口槽宽度,入口槽角度,入口槽角度,烟囱直径,烟囱。斜槽,烟囱槽宽度,烟囱槽角度和烟囱相对于入口的位置。基于“流化质量”度量来评估流化的行为,得到关于装置中颗粒分布的信息。尽管需要额外的工作来阐明用于细颗粒的小规模RFB的设计指南,但是在该工作中评估的初始设计表明,在较小直径的流化床中开发流化床的可能性,呈现许多潜在应用的过程强化的机会。

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