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首页> 外文期刊>Journal of Colloid and Interface Science >Development of Effective Stokesian Dynamics Method for Ferromagnetic Colloidal Dispersions (Cluster-based Stokesian Dynamics Method)
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Development of Effective Stokesian Dynamics Method for Ferromagnetic Colloidal Dispersions (Cluster-based Stokesian Dynamics Method)

机译:铁磁胶体分散有效斯托克斯动力学方法的发展(基于簇的斯托克斯动力学方法)

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摘要

We have developed a new Stokesian dynamics (SD) method for nondilute colloidal dispersions, which enables us to reduce drastically the computation time. To verity the validity of the present method, which is called the "cluster-based SD method," three-dimensional simulations of a ferromagnetic colloidal dispersion have been carried out for a simple shear flow. The correlation function and viscosity have been evaluated to comapre the results obtained by the present method with those obtained by the ordinary SD method and by the method of ignoring hydrodynamic interactions between particles. The results obtained here are summarized as follows. The transient properties from an initial state obtained by the present method agree well with those obtained by the ordinary method, even if a raidus r_(clstr), which defines the clusters formation, is taken as a small value such as r_(clstr) = 1.2d (d is the particle diameter). Also, the equilibrium properties such as the pair correlation function and viscosity obtained by the present cluster-based method are in satisfactory agreement with those obtained by the ordinary SD method. Furthermore, the cluster-based method drastically reduces the computation time to about one-fourteenth to one-seventieth that of the ordinary method. It is clear from these results that the cluster-based SD method is significantly superior to the ordinary SD method for ferromagnetic colloidal dispersions for which a large model system such as N = 1000 or 10,000 is indispensable in simulations.
机译:我们为非稀释胶体分散体开发了一种新的Stokesian动力学(SD)方法,这使我们能够大大减少计算时间。为了验证本方法(称为“基于聚类的SD方法”)的有效性,已针对简单剪切流进行了铁磁胶体分散体的三维模拟。已经评估了相关函数和粘度,以将通过本方法获得的结果与通过普通SD方法以及通过忽略颗粒之间的流体动力学相互作用的方法获得的结果进行比较。这里获得的结果总结如下。即使将定义簇形成的raidus r_(clstr)取为一个小值,例如r_(clstr)=,通过本方法获得的初始状态的瞬态特性也与通过常规方法获得的瞬态特性非常吻合。 1.2d(d为粒径)。而且,通过本基于簇的方法获得的平衡性质例如对相关函数和粘度与通过常规SD方法获得的平衡性质令人满意。此外,基于簇的方法将计算时间大大减少到普通方法的大约十四分之一到十分之一。从这些结果可以清楚地看出,对于铁磁胶体分散体,基于簇的SD方法显着优于常规SD方法,对于后者,模拟中不可缺少诸如N = 1000或10,000的大型模型系统。

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