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AN IMPROVED RICHARDSON-ZAKI FORMULA FOR COMPUTING MIXED LAYER COMPOSITION IN BINARY SOLID-LIQUID FLUIDIZED BEDS

机译:一种改进的RICHARDSON-ZAKI公式,用于计算二元固相流化床中的混合层组成

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In a liquid fluidized bed consisting of binary solid particles differing in size and density, the mixing of the two kinds of particles occurs and the degree of mixing is controlled by an equilibrium force balance relationship. A model to predict the volume fractions of particles in the mixed layer is developed in this paper on the basis of the force balance relationship of each particle species. In describing the drag forces of particle components 1 and 2 in a mixed layer, two hypothetical mono-component beds, bed (1*) and bed (2*), are introduced. The bed (i*) (i = 1, 2) consists of only one particle component i, and it is assumed that the drag force acting on the particle component i in this bed is equal to that acting on component i in the mixed layer. This assumption, coupled with the Richardson and Zaki formula, leads to a modified Richardson and Zaki formula for computing the composition of the mixed layer in a binary solid-liquid fluidized bed. The validity of this model is tested against experimental data. [References: 14]
机译:在由大小和密度不同的二元固体颗粒组成的液体流化床中,发生两种颗粒的混合,并且混合的程度由平衡力平衡关系控制。基于每种粒子的力平衡关系,建立了一个预测混合层中粒子体积分数的模型。在描述混合层中的粒子组分1和2的阻力时,引入了两个假设的单组分床,床(1 *)和床(2 *)。床层(i *)(i = 1,2)仅由一个颗粒成分i组成,并且假定作用在该床层中的颗粒成分i上的拖曳力等于作用在混合层中成分i上的拖曳力。该假设与Richardson和Zaki公式相结合,得出了改进的Richardson和Zaki公式,用于计算二元固液流化床中混合层的组成。针对实验数据测试了该模型的有效性。 [参考:14]

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