Kim Eunhye, Stratford Kevin, Camp Philip J, Cates Michael E
SUPA, School of Physics, The University of Edinburgh, JCMB, Edinburgh, UK.
J Phys Chem B. 2009 Mar 26;113(12):3681-93. doi: 10.1021/jp806678m.
We use lattice Boltzmann simulations, in conjunction with Ewald summation methods, to investigate the role of hydrodynamic interactions in colloidal suspensions of dipolar particles, such as ferrofluids. Our work addresses volume fractions phi of up to 0.20 and dimensionless dipolar interaction parameters lambda of up to 8. We compare quantitatively with Brownian dynamics simulations, in which many-body hydrodynamic interactions are absent. Monte Carlo data are also used to check the accuracy of static properties measured with the lattice Boltzmann technique. At equilibrium, hydrodynamic interactions slow down both the long-time and the short-time decays of the intermediate scattering function S(q, t), for wavevectors close to the peak of the static structure factor S(q), by a factor of roughly two. The long-time slowing is diminished at high interaction strengths, whereas the short-time slowing (quantified via the hydrodynamic factor H(q)) is less affected by the dipolar interactions, despite their strong effect on the pair distribution function arising from cluster formation. Cluster formation is also studied in transient data following a quench from lambda = 0; hydrodynamic interactions slow the formation rate, again by a factor of roughly two.
我们结合埃瓦尔德求和方法,使用格子玻尔兹曼模拟来研究流体动力学相互作用在诸如铁磁流体等偶极粒子胶体悬浮液中的作用。我们的工作涉及高达0.20的体积分数φ和高达8的无量纲偶极相互作用参数λ。我们与不存在多体流体动力学相互作用的布朗动力学模拟进行了定量比较。蒙特卡罗数据也用于检验用格子玻尔兹曼技术测量的静态性质的准确性。在平衡状态下,对于接近静态结构因子S(q)峰值的波矢,流体动力学相互作用使中间散射函数S(q, t)的长时间和短时间衰减都减慢了大约两倍。在高相互作用强度下,长时间减慢效应减弱,而短时间减慢(通过流体动力学因子H(q)量化)受偶极相互作用的影响较小,尽管它们对由团簇形成引起的对分布函数有很强的影响。还研究了从λ = 0猝灭后的瞬态数据中的团簇形成;流体动力学相互作用使形成速率减慢,同样减慢了大约两倍。