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首页> 外文期刊>The Korean journal of chemical engineering >Large-scale calculation of hydrodynamic transport properties for random suspensions of hard-sphere particles
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Large-scale calculation of hydrodynamic transport properties for random suspensions of hard-sphere particles

机译:硬球颗粒随机悬浮液的水动力传输性质的大规模计算

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摘要

A numerical method based on fast multipole summation scheme is used to calculate hydrodynamic interactions in random suspensions of non-colloidal hard-sphere particles. The calculation is carried out for suspensions of 1,024 particles randomly placed in periodic unit cell to determine hydrodynamic transport properties such as permeability of a viscous flow through porous medium, effective viscosity of suspension, and sedimentation velocity of the suspended particles. The particle volume fraction o ranges from 0.01 to 0.25. Effect of particle number N on the transport properties was examined through the numerical calculations with N=64-1,024. It is shown that sedimentation velocity increases with N approaching an estimate for infinite N, and the finite N effect is negligible in effective viscosity and permeability problems. The present scheme is quite useful for obtaining a statistically-averaged quantity for random suspensions. As an example, ensemble-averaged velocity when position of one particle is fixed is numerically obtained in sedimentation problem. The numerical results are shown to be in excellent agreement with theoretical prediction.
机译:基于快速多极点求和方案的数值方法用于计算非胶体硬球颗粒的随机悬浮液中的流体动力相互作用。对随机放置在周期性晶胞中的1,024个颗粒的悬浮液进行计算,以确定流体动力传输特性,例如通过多孔介质的粘性流的渗透性,悬浮液的有效粘度以及悬浮颗粒的沉降速度。颗粒体积分数o为0.01至0.25。通过N = 64-1,024的数值计算,检查了粒子数N对传输性质的影响。结果表明,随着N趋近于无限N的估计值,沉降速度增加,而在有效的粘度和渗透率问题中,有限N的影响可以忽略。本方案对于获得随机悬浮液的统计平均量非常有用。例如,在沉降问题中,通过数值求出固定一个粒子的位置时的集合平均速度。数值结果表明与理论预测非常吻合。

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