Fischer Lukas P, Peter Toni, Holm Christian, de Graaf Joost
Institute for Computational Physics (ICP), University of Stuttgart, Allmandring 3, 70569 Stuttgart, Germany.
J Chem Phys. 2015 Aug 28;143(8):084107. doi: 10.1063/1.4928502.
The so-called "raspberry" model refers to the hybrid lattice-Boltzmann and Langevin molecular dynamics scheme for simulating the dynamics of suspensions of colloidal particles, originally developed by Lobaskin and Dünweg [New J. Phys. 6, 54 (2004)], wherein discrete surface points are used to achieve fluid-particle coupling. This technique has been used in many simulation studies on the behavior of colloids. However, there are fundamental questions with regards to the use of this model. In this paper, we examine the accuracy with which the raspberry method is able to reproduce Stokes-level hydrodynamic interactions when compared to analytic expressions for solid spheres in simple-cubic crystals. To this end, we consider the quality of numerical experiments that are traditionally used to establish these properties and we discuss their shortcomings. We show that there is a discrepancy between the translational and rotational mobility reproduced by the simple raspberry model and present a way to numerically remedy this problem by adding internal coupling points. Finally, we examine a non-convex shape, namely, a colloidal dumbbell, and show that the filled raspberry model replicates the desired hydrodynamic behavior in bulk for this more complicated shape. Our investigation is continued in de Graaf et al. [J. Chem. Phys. 143, 084108 (2015)], wherein we consider the raspberry model in the confining geometry of two parallel plates.
所谓的“树莓”模型指的是用于模拟胶体颗粒悬浮液动力学的混合格子玻尔兹曼和朗之万分子动力学方案,最初由洛巴斯金和迪恩韦格开发[《新物理学杂志》6, 54 (2004)],其中使用离散表面点来实现流体 - 颗粒耦合。该技术已用于许多关于胶体行为的模拟研究中。然而,关于这个模型的使用存在一些基本问题。在本文中,我们将树莓方法与简单立方晶体中固体球体的解析表达式进行比较,研究其再现斯托克斯级流体动力学相互作用的准确性。为此,我们考虑了传统上用于确定这些性质的数值实验的质量,并讨论了它们的缺点。我们表明,简单树莓模型再现的平动和转动迁移率之间存在差异,并提出了一种通过添加内部耦合点来数值解决这个问题的方法。最后,我们研究了一种非凸形状,即胶体哑铃,并表明填充树莓模型对于这种更复杂的形状在整体上再现了所需的流体动力学行为。我们的研究在德格拉夫等人的论文[《化学物理学杂志》143, 084108 (2015)]中继续进行,其中我们考虑了在两个平行板的受限几何结构中的树莓模型。