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首页> 外文期刊>Journal of Aerosol Science >Mobility of permeable aggregates:effects of shape and porosity
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Mobility of permeable aggregates:effects of shape and porosity

机译:渗透性骨料的流动性:形状和孔隙率的影响

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Hydrodynamic resistances of spheroidal porous agglomerates are calculated theoretically for circumstances when the flow is directed either parallel or perpendicular to their symmetry axes.Expressions for the equivalent mobility radii of oblate and prolate spheroids are calculated and generalized for wide ranges of particle porosities,sizes and fractal dimensions D_f.Aggregate shape and permeability are shown to have competitive effects on their mobility.Permeability has the strongest effect on the mobility radii of agglomerates with shapes close to spherical and for extremely porous structures.For fractal-like agglomerates,permeability has the strongest effects for low D_f structures,composed of about several hundreds of elementary particles.Mobility radii of these agglomerates are found to have fractal dimensions about 10% higher than the one that could be obtained from the geometrical size analysis.Large fractal agglomerates behave like impermeable bodies even if their average porosity is large.A similar behavior is characteristic of very small agglomerates,because their porosity is normally low.The calculated mobility radii are used for correlating the size-dependent free fall velocity of porous ice crystals.
机译:理论上针对平行或垂直于对称轴流的情况计算球形多孔团聚体的流体动力学阻力,计算了扁球形和扁球形的等效迁移率半径的表达式,并概括了大范围的颗粒孔隙率,尺寸和分形聚集体的形状和渗透率对其迁移率具有竞争性影响。渗透率对形状接近球形且多孔结构的团聚体的迁移率半径影响最大。对于分形的团聚体,渗透率的影响最大对于低D_f结构,它由大约几百个基本粒子组成。这些团聚体的迁移率半径比通过几何尺寸分析获得的分形半径大约10%。大分形团聚体甚至表现为不渗透体如果他们的平均孔隙率ty大。极小的团聚物的特征是相似的行为,因为它们的孔隙率通常很低。计算出的迁移率半径用于关联多孔冰晶的尺寸依赖性自由下落速度。

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