Harada S, Tanaka R, Nogami H, Sawada M
Division of Field Engineering for Environment, Graduate School of Engineering, Hokkaido University N13-W8, Sapporo 060-8628, Japan.
J Colloid Interface Sci. 2006 Sep 1;301(1):123-9. doi: 10.1016/j.jcis.2006.04.051. Epub 2006 Apr 25.
The fragmentation dynamics of aggregate of non-Brownian particles in shear flow is investigated numerically. The breakup behaviors of aggregates having the same connectivity but the different space-filling properties are examined. The Lagrangian particle simulation in a linear flow field is performed. The effect of surrounding fluid on the motion of multiple particles is estimated by Stokesian dynamics approach. The inter-particle force is calculated from the retarded van der Waals potential based on the Lifshitz theory. The results obtained in this work indicate that the fragmentation behavior of colloidal aggregates depends on their fractal structure. However, if the resultant aggregate size is smaller than the critical one, the fragmentation behavior shows the universality regardless of their original structure. Furthermore, the restructuring of aggregate in shear flow and its effect on the fragmentation process are also discussed.
对剪切流中非布朗粒子聚集体的破碎动力学进行了数值研究。研究了具有相同连通性但不同空间填充特性的聚集体的破碎行为。在线性流场中进行了拉格朗日粒子模拟。通过斯托克斯动力学方法估计了周围流体对多个粒子运动的影响。基于 Lifshitz 理论,从延迟范德华势计算粒子间作用力。这项工作得到的结果表明,胶体聚集体的破碎行为取决于它们的分形结构。然而,如果最终聚集体尺寸小于临界尺寸,无论其原始结构如何,破碎行为都表现出普遍性。此外,还讨论了剪切流中聚集体的重组及其对破碎过程的影响。