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Particle-Scale Investigation of the Solid Dispersion and Residence Properties in a 3-D Spout-Fluid Bed

机译:3-D喷流床中固体分散度和保留特性的粒度研究

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Three-dimensional modeling of the gas-solid flow in a spout-fluid bed is conducted at the particle-scale level. Both the local and systematic dispersion behaviors of solid phase are initially investigated. Then, the solid circulating and resident behaviors are discussed. The results demonstrate that vigorously lateral solid dispersion appears in the spout region and the periphery of the fountain, whereas intensely vertical dispersion exists in the central region of the bed. Moreover, the inlet configuration of bed strongly affects the distribution of lateral dispersion, while its influence on the vertical one disappears in the fountain. Strong anisotropy of solid dispersion along the three directions is obtained. Systematic dispersion intensity along the vertical direction is an order of magnitude larger than the lateral one. In addition, two circulating patterns of solid phase can be identified. Solid residence time is the smallest in the spout region and the largest in the bottom corner.
机译:喷流床中气固两相流的三维建模是在颗粒级进行的。初步研究了固相的局部和系统分散行为。然后,讨论了固体的循环和驻留行为。结果表明,强烈的横向固体分散出现在喷口区域和喷泉的周围,而强烈的垂直分散存在于床的中央区域。而且,床的入口构造强烈地影响了侧向分散的分布,而其对垂直方向的影响在喷泉中消失了。获得沿三个方向的固体分散体的强各向异性。沿着垂直方向的系统色散强度比横向方向大一个数量级。此外,可以确定两种固相循环模式。固体停留时间在喷口区域最小,在底角最大。

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