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Reversible Coagulation of Colloidal Suspension in Shallow Potential Wells: Direct Numerical Simulation

机译:浅潜势井中胶体悬浮液的可逆凝结:直接数值模拟

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摘要

Brownian dynamics computer simulations of aggregation in 2D colloidal suspensions are discussed.The simulations are based on the Langevin equations, pairwise interaction between colloidal particles and take into account Brownian, hydrodynamic and colloidal forces. The chosen mathematical model enables to predict the correct values of diffusion coefficient of freely moving particle, the mean value of kinetic energy for each particle in ensemble of interacting colloidal particles and residence times of colloidal particles inside the potential wells of different depths. The simulations allow monitoring formation and breakage of clusters in a suspension as well as time dependence of the mean cluster size.
机译:讨论了二维胶体悬浮液聚集的布朗动力学计算机仿真,该仿真基于Langevin方程,胶体颗粒之间的成对相互作用,并考虑了布朗力,流体动力学和胶体力。所选择的数学模型能够预测自由移动的粒子的扩散系数的正确值,相互作用的胶体粒子集合中每个粒子的动能平均值以及胶体粒子在不同深度的势阱中的停留时间。通过仿真可以监视悬浮液中团簇的形成和破裂以及平均团簇大小的时间依赖性。

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