Noirhomme Martial, Ludewig François, Vandewalle Nicolas, Opsomer Eric
GRASP Laboratory, CESAM Research Unit, Physics Department, B5a, University of Liège, B-4000-Liège, Belgium.
Phys Rev E. 2017 Feb;95(2-1):022905. doi: 10.1103/PhysRevE.95.022905. Epub 2017 Feb 23.
We investigate numerically and theoretically the internal structures of a driven granular gas in cuboidal cell geometries. Clustering is reported and particles are classified as gaseous or clustered via a local packing fraction criterion based on a Voronoi tessellation. We observe that small clusters arise in the corners of the box, elucidating early reports of partial clustering. These aggregates have a condensation-like surface growth. When a critical size is reached, a structural transition occurs and all clusters merge together, leaving a hole in the center of the cell. This hole then becomes the new center of particle capture. Taking into account all structural modifications and defining a saturation packing fraction, we propose an empirical model for the cluster growth.
我们通过数值模拟和理论分析研究了立方形容器几何结构中驱动颗粒气体的内部结构。报告了聚类现象,并基于Voronoi镶嵌通过局部填充率标准将颗粒分类为气态或聚类态。我们观察到在盒子的角落出现小簇,这证实了早期关于部分聚类的报道。这些聚集体具有类似凝聚的表面生长。当达到临界尺寸时,会发生结构转变,所有簇合并在一起,在单元中心留下一个空洞。这个空洞随后成为新的颗粒捕获中心。考虑到所有结构变化并定义饱和填充率,我们提出了一个簇生长的经验模型。