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Dynamics of bidensity particle suspensions in a horizontal rotating cylinder

机译:水平旋转圆柱体中的潮汐粒子悬架动态

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We report Stokesian dynamics simulations of bidensity suspensions rotating in a horizontal cylinder. We studied the phase space and radial and axial patterns in settling as well as floating systems. Each system was composed of particle mixtures of two different densities. As many as eight unique phases are identified for each system along the radial plane. The bidensity system shows similarity to the monodisperse case only when the radial distribution of the particles is completely uniform. Characteristic behavior of the bidensity systems is identical at low rotation rates and contrasting when centrifugal force dominates. Expressing the phase boundaries in terms of dimensionless parameters U_s/(ΩR) and g/(Ω~2R) gives a linear fit unifying the data in the gravity-dominated regime. At high rotation rates, the behavior is opposing for either system though linear in nature. In the axial direction, number density profiles of both systems affirm the phenomenon of band formation. Location of the axial bands remains the same for heavy and light particles in both systems. We have also reestablished that an inhomogeneous particle configuration in the radial plane induces growing instabilities in the axial plane which amplify to form particle bands similar to monodisperse suspensions.
机译:我们报告了在水平圆筒中旋转的潮呼吸动力学模拟。我们研究了沉降和浮动系统中的相位空间和径向和轴向图案。每个系统由两种不同密度的粒子混合物组成。沿着径向平面识别每个系统的多达八个次数。当颗粒的径向分布完全均匀时,趋线系统才显示出与单分开壳体的相似性。在离心力占据偏移时,趋向系统的特征性能在低旋转速率和对比度时相同。在无量纲参数U_S /(ωR)和G /(ω〜2R)方面表达相位边界给出了直线拟合重力主导地区中的数据。在高旋转速率下,该行为对任一系统的行为虽然是线性的。在轴向方向上,两个系统的数密度谱都肯定了带状的现象。轴向带的位置对于两个系统中的重和光颗粒保持不变。我们还重新建立了径向平面中的不均匀颗粒构造在扩增以形成类似于单分散悬架的粒子带中的轴向平面中的不均匀颗粒构造。

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