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Short-time transport properties in dense suspensions: From neutral to charge-stabilized colloidal spheres

机译:稠密悬浮液中的短时传输特性:从中性到电荷稳定的胶体球

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We present a detailed study of short-time dynamic properties in concentrated suspensions of charge-stabilized and of neutral colloidal spheres. The particles in many of these systems are subject to significant many-body hydrodynamic interactions. A recently developed accelerated Stokesian dynamics (ASD) simulation method is used to calculate hydrodynamic functions, wave-number-dependent collective diffusion coefficients, self-diffusion and sedimentation coefficients, and high-frequency limiting viscosities. The dynamic properties are discussed in dependence on the particle concentration and salt content. Our ASD simulation results are compared with existing theoretical predictions, notably those of the renormalized density fluctuation expansion method of Beenakker and Mazur [Physica A 126, 349 (1984)], and earlier simulation data on hard spheres. The range of applicability and the accuracy of various theoretical expressions for short-time properties are explored through comparison with the simulation data. We analyze, in particular, the validity of generalized Stokes-Einstein relations relating short-time diffusion properties to the high-frequency limiting viscosity, and we point to the distinctly different behavior of de-ionized charge-stabilized systems in comparison to hard spheres. (c) 2008 American Institute of Physics.
机译:我们对电荷稳定的和中性胶体球的浓缩悬浮液中的短时动态特性进行了详细的研究。这些系统中许多系统中的粒子都经受着明显的多体流体动力学相互作用。最近开发的加速斯托克斯动力学(ASD)模拟方法用于计算流体力学函数,波数相关的集体扩散系数,自扩散和沉降系数以及高频极限粘度。根据颗粒浓度和盐含量讨论了动力学性质。我们的ASD模拟结果与现有的理论预测相比较,特别是Beenakker和Mazur的重归一化密度波动扩展方法[Physica A 126,349(1984)],以及较早的硬球模拟数据。通过与仿真数据的比较,探索了短时间特性的各种理论表达式的适用范围和准确性。我们特别分析了将短时扩散特性与高频极限粘度相关的广义Stokes-Einstein关系的有效性,并且指出了与硬球相比,去离子电荷稳定系统的行为截然不同。 (c)2008年美国物理研究所。

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