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Wave propagation and pattern formation in two-dimensional hexagonally-packed granular crystals under various configurations

机译:二维六方堆积粒状晶体在各种构型下的波传播和图形形成

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摘要

We study wave propagation in two-dimensional granular crystals under the Hertzian contact law consisting of hexagonal packings of spheres under various basin geometries including hexagonal, triangular, and circular basins which can be tiled with hexagons. We find that the basin geometry will influence wave reflection at the boundaries, as expected, and also may result in bottlenecks forming. While exterior strikers the size of a single sphere have been considered in the literature, it is also possible to consider strikers which impact multiple spheres along a boundary, or to have multiple sides being struck simultaneously. It is also possible to consider obstructions or even strikers in the interior of the hexagonally packed granular crystal, as previously considered in the case of square packings, resulting in the basin geometry no longer forming a convex set. We consider various configurations of either boundary or interior strikers. We shall also consider the case where a granular crystal is composed of two separate crystals of differing material, with a single interface between the two distinct materials. Depending on the relative material properties of each type of sphere, this can result in a trapping of most of the wave energy within one of the two regions. While repeated reflections from the boundaries will cause the systems we study to fall into disorder for large time, there are a number of interesting wave structures and patters that emerge as transients at intermediate timescales.
机译:我们研究了赫兹接触定律下二维球形晶体中的波传播,该定律由球体的六边形堆积组成,这些球面在不同的盆形结构中都可以用六边形平铺,包括六边形,三角形和圆形盆。我们发现,盆地的几何形状会像预期的那样影响边界处的波反射,也可能导致瓶颈形成。尽管在文献中考虑了外部撞针的大小为单个球体,但也可以考虑沿边界撞击多个球体的撞针,或同时击打多个侧面。如先前在方形填料的情况下所考虑的那样,还可以考虑在六方堆积的颗粒状晶体的内部存在障碍物甚至撞针,从而导致水槽的几何形状不再形成凸形集。我们考虑边界或内部撞针的各种配置。我们还将考虑粒状晶体由两种不同材料的独立晶体组成,两种不同材料之间具有单一界面的情况。取决于每种类型的球体的相对材料属性,这可能导致大部分波能被捕获在两个区域之一中。尽管边界的反复反射将使我们研究的系统长时间陷入混乱状态,但在中间时间尺度上,有许多有趣的波浪结构和模式会以瞬态形式出现。

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