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HYDRODYNAMICS OF FRACTAL AGGREGATES WITH RADIALLY VARYING PERMEABILITY

机译:径向渗透率变化的分形团块的水动力学

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Hydrodynamic properties of fractal aggregates with radially varying permeability are investigated in terms of two parameters: radius of equivalent solid sphere experiencing the same drag as the aggregate (Omega*radius of aggregate) and fluid collection efficiency (eta) of the aggregate. Resistance to the fluid flow through the aggregate is predicted to increase with increasing fractal dimension, while the fluid collection efficiency is expected to decrease. It is shown that a reasonable estimate of the fluid drag force on a fractal aggregate may be obtained by assigning a constant volume-averaged porosity to the aggregate and using any of the expressions available in the literature for aggregates with uniform permeability. The two hydrodynamic parameters, Omega acid eta, are used to modify the existing expressions for interactions between solid spheres to account for the porous nature of aggregates and thus calculate the collision rate kernels for interacting aggregates. The ratio of hydrodynamic radius of an aggregate to its radius of gyration predicted by the proposed model was in reasonable agreement with an experimental value reported in the literature. (C) 1996 Academic Press, Inc. [References: 82]
机译:用两个参数研究了渗透率径向变化的分形骨料的流体力学特性:等效固体球体的半径与骨料承受相同的阻力(Ω*骨料半径)和骨料的流体收集效率(η)。随着分形维数的增加,对流经骨料的流体的阻力预计会增加,而流体的收集效率则有望降低。结果表明,可以通过为骨料分配恒定的体积平均孔隙率,并使用文献中可用于均匀渗透率骨料的任何表达式,来获得对分形骨料的流体阻力的合理估计。使用两个流体动力学参数Omega acid eta来修改固体球体之间相互作用的现有表达式,以说明聚集体的多孔性质,从而计算出与聚集体相互作用的碰撞率内核。所提出的模型所预测的骨料的流体力学半径与回转半径之比与文献报道的实验值合理地吻合。 (C)1996 Academic Press,Inc. [参考:82]

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