Liu Yuanpeng, Lee Ting-Uei, Rezaee Javan Anooshe, Xie Yi Min
Centre for Innovative Structures and Materials, School of Engineering, RMIT University, Melbourne 3001, Australia.
R Soc Open Sci. 2022 Aug 10;9(8):220675. doi: 10.1098/rsos.220675. eCollection 2022 Aug.
Goldberg polyhedra have been widely studied across multiple fields, as their distinctive pattern can lead to many useful applications. Their topology can be determined using Goldberg's method through generating topologically equivalent structures, named cages. However, the geometry of Goldberg polyhedra remains underexplored. This study extends Goldberg's framework to a new method that can systematically determine the topology and effectively control the geometry of Goldberg polyhedra based on the initial shapes of cages. In detail, we first parametrize the cage's geometry under specified topology and polyhedral symmetry; then, we manipulate the predefined independent variables through optimization to achieve the user-defined geometric properties. The benchmark problem of finding equilateral Goldberg polyhedra is solved to demonstrate the effectiveness of the proposed method. Using this method, we have successfully achieved nearly exact spherical Goldberg polyhedra, with all vertices on a sphere and all faces being planar under extremely low numerical errors. Such results serve as strong numerical evidence for the existence of this new type of Goldberg polyhedra. Furthermore, we iteratively perform -means clustering and optimization to significantly reduce the number of different edge lengths to benefit the cost reduction for architectural and engineering applications.
戈德堡多面体已在多个领域得到广泛研究,因为它们独特的图案可带来许多有用的应用。可以使用戈德堡方法通过生成拓扑等效结构(称为笼)来确定它们的拓扑结构。然而,戈德堡多面体的几何形状仍未得到充分探索。本研究将戈德堡框架扩展为一种新方法,该方法可以基于笼的初始形状系统地确定拓扑结构并有效控制戈德堡多面体的几何形状。详细地说,我们首先在指定的拓扑结构和多面体对称性下对笼的几何形状进行参数化;然后,我们通过优化来操纵预定义的自变量,以实现用户定义的几何属性。通过解决寻找等边戈德堡多面体的基准问题来证明所提出方法的有效性。使用这种方法,我们成功地实现了几乎精确的球形戈德堡多面体,在极低的数值误差下,所有顶点都在一个球面上,并且所有面都是平面。这些结果为这种新型戈德堡多面体的存在提供了有力的数值证据。此外,我们迭代地执行K均值聚类和优化,以显著减少不同边长的数量,从而有利于降低建筑和工程应用的成本。