Max Planck Institute for Dynamics of Complex Technical Systems, Sandtorstrasse 1, D-39108 Magdeburg, Germany.
J Colloid Interface Sci. 2009 Nov 15;339(2):362-72. doi: 10.1016/j.jcis.2009.07.022. Epub 2009 Jul 14.
We investigated the restructuring behavior of colloidal aggregates by means of the discrete element method. We used a recently proposed model [V. Becker, H. Briesen, Physical Review E 78 (6) (2008) 061404] for tangential inter-particle forces, capable of supporting bending moments. We extended this model by the capability of supporting torsional moments. The time evolution of the aggregates' radius of gyration was tracked and a power law relation between the number of primary particles and the final radius of gyration was found. For the hydrodynamic drag forces the free-draining approximation is employed. We investigated the quality of the free-draining approximation by fully resolved finite element simulations for small aggregates. We found that the free-draining approximation overestimates the drag forces and we identified the usage of effective shear rates as a possible ansatz for reduced modeling of hydrodynamic forces.
我们通过离散单元法研究了胶体聚集体的重构行为。我们使用了最近提出的模型[V. Becker, H. Briesen, Physical Review E 78 (6) (2008) 061404]来模拟切向颗粒间力,该模型能够支持弯矩。我们通过增加能够支持扭矩的能力来扩展该模型。跟踪了聚集体转动惯量半径的时间演化,并发现了初级颗粒数量与最终转动惯量半径之间的幂律关系。对于水动力阻力,采用了自由排水近似。我们通过对小聚集体的完全解析有限元模拟研究了自由排水近似的质量。我们发现自由排水近似高估了阻力,并且我们确定了有效剪切率的使用是水动力力简化建模的一个可能的方法。