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Use of symmetry groups for generation of complex space grids and group-theoretic vibration analysis of triple-layer grids

机译:对称组用于产生复杂空间网格的生成和三层网格的组理论振动分析

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Space grids often exhibit a highly regular structure which is formed by repeated structural units. In the past, various algorithms have been developed to generate more complex structural assemblies using simple commands. In this paper, we explore the innovative use of symmetry groups to create various configurations of space grids, ranging from rectangular grids and their variants, to triangular and hexagonal grids, as well as grid forms of more complex shape. The advantage of this approach is that the generated space grid has pre-determined symmetry properties; this represents a shift in current design philosophy. A second objective is to show how group theory may be used to simplify the vibration analysis of layered space grids. The procedure is applied to the transverse vibrations of triple-layer space grids of D_(2h) and D_(4h) symmetries, modelled as discrete-parameter systems. A study of the symmetry of subspace basis vectors allows some important predictions to be made on the pattern of the motions and the location of stationary nodes. It is found that the lowest and highest frequencies of space grids of this type occur in the first subspace of the system, a finding that has significant computational importance.
机译:空间网格通常表现出由重复的结构单元形成的高度规则结构。过去,已经开发了各种算法以使用简单的命令生成更复杂的结构组件。在本文中,我们探讨了对称组的创新使用,以创建各种空间网格的配置,从矩形网格和它们的变体,三角形和六边形网格以及更复杂的网格形状。这种方法的优点在于产生的空间网格具有预定的对称性;这代表了当前设计哲学的转变。第二个目的是展示群体理论如何用于简化分层空间网格的振动分析。该过程应用于D_(2H)和D_(4H)对称的三层空间网格的横向振动,建模为离散参数系统。对对称性的对称性对称性的研究允许对运动的模式和静止节点的位置进行一些重要的预测。发现,这种类型的空间网格的最低和最高频率发生在系统的第一子空间中,找到具有重要的计算重要性的发现。

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