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Permeation and Blockage of Fine Particles Transported by Updraft through a Packed Bed

机译:上升气流通过填料床的细小颗粒的渗透和堵塞

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The fines generated in iron making blast furnace bring about the unsteady or unstable gas/liquid permeability and solid motion. Fundamental experiment was carried out to investigate the inhomogeneous phenomena such as flow channel blockage by fine particles transferred by updraft through a fixed packed bed. The alumina sphere and coke were used for packed bed and fine particles transferred, respectively. Conclusion of this study is as follows. The principal factor controlling a criterion for the blockage is a particle diameter ratio of coke to alumina particle, and fines concentration is not a primary factor. Consideration on a hydraulic equivalent diameter of a regular packing model of spheres is effective to predict the critical diameter ratio and it resulted in good agreement with the experimentally determined. Locally blocked mass, that is, a cluster consisting of coarse alumina particles and fines through which gas is incapable of flowing is dispersed in the bed. The void fraction of packed bed being equivalent to the pressure drop, calculated from Ergun's equation, is considerably small compared with the initial value when the local blockage is in existence. Fraction of the local blockage calculated from the void fraction and static holdup of fines is 15–20% as far as the present experimental condition.
机译:炼铁高炉中产生的细粉会导致不稳定的或不稳定的气体/液体渗透性和固体运动。进行了基础实验以研究不均匀现象,例如由上升气流通过固定填充床转移的细颗粒阻塞了流道。氧化铝球和焦炭分别用于填充床和转移的细颗粒。本研究结论如下。控制堵塞标准的主要因素是焦炭与氧化铝颗粒的粒径比,而细粉浓度不是主要因素。考虑球的规则堆积模型的水力当量直径可有效地预测临界直径比,并且与实验确定的结果吻合良好。局部阻塞的物质,即由粗氧化铝颗粒和不能使气体通过的细粉组成的团簇分散在床中。当存在局部阻塞时,填充床的空隙率等于根据Ergun方程计算的压降,与初始值相比要小得多。根据目前的实验条件,由空隙率和细粉的静态滞留率计算得出的局部堵塞率是15–20%。

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