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首页> 外文期刊>AIChE Journal >Bubble Dynamics in a 3-D Gas-Solid Fluidized Bed Using Ultrafast Electron Beam X-Ray Tomography and Two-Fluid Model
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Bubble Dynamics in a 3-D Gas-Solid Fluidized Bed Using Ultrafast Electron Beam X-Ray Tomography and Two-Fluid Model

机译:超快电子束X射线断层扫描和两流体模型在3-D气固流化床中的气泡动力学

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Bubble characteristics in a three-dimension gas-fluidized bed (FB) have been measured using noninvasive ultrafast electron beam X-ray tomography. The measurements are compared with predictions by a two-fluid model (TFM) based on kinetic theory of granular flow. The effect of bed material (glass, alumina, and low linear density polyethylene (LLDPE), d_p-mm), inlet gas velocity, and initial particle bed height on the bubble behavior is investigated in a cylindrical column of 0.1-m diameter. The bubble rise velocity is determined by cross correlation of images from dual horizontal planes. The bubble characteristics depend highly upon the particle collisional properties. The bubble sizes obtained from experiments and simulations show good agreement. The LLDPE particles show high gas hold-up and higher bubble rise velocity than predicted on basis of literature correlations. The bed expansion is relatively high for LLDPE particles. The X-ray tomography and TFM results provide in-depth understanding of bubble behavior in FBs containing different granular material types.
机译:已经使用非侵入性超快电子束X射线断层扫描技术测量了三维气体流化床(FB)中的气泡特征。将测量结果与基于颗粒流动力学理论的双流体模型(TFM)的预测进行比较。在直径为0.1 m的圆柱中,研究了床层材料(玻璃,氧化铝和低线性密度聚乙烯(LLDPE),d_p-mm),进气速度和初始床层高度对气泡行为的影响。气泡上升速度由来自双水平面的图像的互相关确定。气泡特性在很大程度上取决于粒子的碰撞特性。从实验和模拟获得的气泡尺寸显示出良好的一致性。 LLDPE颗粒比根据文献相关性预测的结果显示出更高的气体滞留率和更高的气泡上升速度。对于LLDPE颗粒,床膨胀相对较高。 X射线断层扫描和TFM结果提供了对包含不同颗粒材料类型的FB中气泡行为的深入了解。

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