Bormashenko Edward, Legchenkova Irina, Frenkel Mark, Shvalb Nir, Shoval Shraga
Chemical Engineering Department, Engineering Faculty, Ariel University, P.O.B. 3, Ariel 407000, Israel.
Department of Mechanical Engineering & Mechatronics, Faculty of Engineering, Ariel University, P.O.B. 3, Ariel 407000, Israel.
Entropy (Basel). 2023 Jan 2;25(1):92. doi: 10.3390/e25010092.
We used the complete set of convex pentagons to enable filing the plane without any overlaps or gaps (including the Marjorie Rice tiles) as generators of Voronoi tessellations. Shannon entropy of the tessellations was calculated. Some of the basic mosaics are flexible and give rise to a diversity of Voronoi tessellations. The Shannon entropy of these tessellations varied in a broad range. Voronoi tessellation, emerging from the basic pentagonal tiling built from hexagons only, was revealed (the Shannon entropy of this tiling is zero). Decagons and hendecagon did not appear in the studied Voronoi diagrams. The most abundant Voronoi tessellations are built from three different kinds of polygons. The most widespread is the combination of pentagons, hexagons, and heptagons. The most abundant polygons are pentagons and hexagons. No Voronoi tiling built only of pentagons was registered. Flexible basic pentagonal mosaics give rise to a diversity of Voronoi tessellations, which are characterized by the same symmetry group. However, the coordination number of the vertices is variable. These Voronoi tessellations may be useful for the interpretation of the iso-symmetrical phase transitions.
我们使用完整的凸五边形集合,以实现无重叠或间隙地填充平面(包括玛乔丽·赖斯瓷砖),作为Voronoi镶嵌的生成元。计算了镶嵌的香农熵。一些基本镶嵌是灵活的,并产生了多种Voronoi镶嵌。这些镶嵌的香农熵在很宽的范围内变化。揭示了仅由六边形构建的基本五边形平铺产生的Voronoi镶嵌(这种平铺的香农熵为零)。十边形和十一边形未出现在所研究的Voronoi图中。最丰富的Voronoi镶嵌由三种不同的多边形构成。最常见的是五边形、六边形和七边形的组合。最丰富的多边形是五边形和六边形。未记录到仅由五边形构成的Voronoi平铺。灵活的基本五边形镶嵌产生了多种Voronoi镶嵌,它们具有相同的对称群。然而,顶点的配位数是可变的。这些Voronoi镶嵌可能有助于解释等对称相变。