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Investigation of Gas-Solid Fluidized Bed Dynamics with Spherical and Non-Spherical Particles

机译:球形和非球形颗粒的气固流化床动力学研究

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The hydrodynamic behavior of a gas-solid fluidized bed operating with both spherical and non-spherical particles is presented in this paper. For this purpose a plexiglass tube with an outside diameter of 3.8cm and a wall thickness of 0.318cm was used as the fluidized bed. With air as the carrier gas spherical borosilicate glass beads with a diameter of 1mm were used as the spherical particles and borosilicate glass with mean particle size of 717 μm were used as non-spherical particles. Methodology of the particle size distribution and sphericity analysis is presented in this paper. Pressure measurements and high-speed imaging were utilized to characterize flows in a 5cm static packed bed. Mapping of bed pressure drop and superficial gas velocity across the bed was done and showed much lower pressure drop occurring for the non-spherical particle. The minimum fluidization and terminal velocity conditions for the specified fluidized bed and particles is also presented in this paper. MatPIV analysis of high-speed images, captured with a high-speed camera shows the flow-field velocity vectors and vorticity for both spherical and non-spherical particles.
机译:本文介绍了用球形和非球形颗粒操作的气体固体流化床的流体动力学行为。为此目的,外径为3.8cm的有机玻璃管,壁厚为0.318cm作为流化床。用空气作为直径为1mm的载气球形硼硅酸盐玻璃珠作为球形颗粒和平均粒径为717μm的硼硅酸盐玻璃用作非球形颗粒。本文提出了粒度分布和球形分析的方法。压力测量和高速成像用于表征5cm静态包装床中的流动。完成了床压降和浅表气体速度的映射,并显示了非球形颗粒的低压下降。本文还提出了规定流化床和颗粒的最小流化和末端速度条件。用高速摄像机捕获的高速图像的MATPIV分析显示了球场速度向量和球形和非球形颗粒的涡流。

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