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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Investigation of segregation of large particles in a pressurized fluidized bed with a high velocity gas: A discrete particle simulation
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Investigation of segregation of large particles in a pressurized fluidized bed with a high velocity gas: A discrete particle simulation

机译:高速气体在加压流化床中大颗粒偏析的研究:离散颗粒模拟

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A numerical study on mixing/segregation phenomena in a pressurized fluidized bed with large particles of Geldart D type of binary density but same diameter with high velocity gas was performed by the use of discrete particle simulation. Particle mixtures are composed of spherical particles with 2 mm diameter and 1 g/cm~3 flotsam density and different jetsam densities of 1.25, 2 and 2.5 g/cm~3 with jetsam volume fraction of 0.5. The particles are initially packed approaching perfect mixing state in a rectangular bed and then fluidized by gas uniformly injected at the bottom of the bed. Effect of increase of pressure and density ratio was investigated and mixing/segregation behavior is discussed in terms of flow patterns, solid concentration profile, height variation, pressure drop variation and mixing kinetics. The results show that increase of pressure causes a more vigorous and chaotic motion with more slugs and large bubbles. With increase of pressure, pressure drop and height of the bed increase and both of them fluctuate more with larger amplitude and shorter frequency. Mixing index also decreases with the increase of pressure, and thus solids' mixing diminishes. Effect of increase of density ratio is somehow like effect of increase of pressure in most cases but has a little difference in some cases.
机译:通过使用离散粒子模拟,对具有二元密度的Geldart D型二元密度大颗粒但直径相同的高速流化床中混合/偏析现象进行了数值研究。颗粒混合物由直径为2 mm,浮选密度为1 g / cm〜3的球形颗粒和Jetsam的体积分数为0.5的1.25、2和2.5 g / cm〜3的不同Jetsam密度组成。颗粒首先在矩形床中堆积成接近完全混合状态,然后通过均匀注入床底部的气体流化。研究了压力和密度比增加的影响,并根据流型,固体浓度分布,高度变化,压降变化和混合动力学讨论了混合/分离行为。结果表明,压力的增加会导致运动更加剧烈和混乱,并产生更多的团块和大气泡。随着压力的增加,床的压降和高度增加,并且两者都以更大的幅度和更短的频率波动更大。混合指数也随着压力的增加而降低,因此固体的混合减少。密度比增加的效果在某种程度上类似于压力增加的效果,但在某些情况下差别不大。

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