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A matrix-based method for the structural analysis of diagrid systems

机译:基于基于矩阵的矩阵 - 仿古系统的结构分析方法

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Diagrid systems have been frequently employed in the last few decades for the construction of tall buildings because of their high lateral stiffness and for their capability to realize complex-shaped structures. Considering mainly diagrid structures with regular forms, many researchers have developed different methods to perform the structural analysis. In this paper, a matrix-based method (MBM) for the analysis of generic freeform diagrid systems is proposed. Unlike existing methodologies, that take into account only shear and bending stiffness, and Finite Element Method approach, the proposed procedure is based on the direct calculation of the complete structure stiffness matrix, without the assemblage of local sub-matrices. This method allows to solve automatically the structural problem, providing both the structure displacements and the axial forces in the diagonals. Then, some comparisons with the Finite Element Method are reported, both for two-dimensional and three-dimensional diagrid systems. In order to show the method capabilities, the analysis concerning the Swiss Re Tower in London is performed. Finally, an application of the MBM is shown regarding the distribution of lateral actions between an external diagrid system and a central core, according to the General Algorithm theory.
机译:在过去的几十年中经常采用古金车系统,因为它们的横向刚度高,并且其能力实现复杂形状的结构。考虑到主要具有常规形式的无媒体结构,许多研究人员已经开发了不同的方法来执行结构分析。本文提出了一种基于矩阵的方法(MBM),用于分析通用自由形式仿古系统。与现有的方法不同,考虑仅考虑剪切和弯曲刚度,以及有限元方法方法,所提出的程序基于完整结构刚度矩阵的直接计算,而不是局部子矩阵的组装。该方法允许自动解决结构问题,提供结构位移和对角线中的轴向力。然后,报告了与有限元方法的一些比较,用于二维和三维仿古系统。为了展示该方法能力,执行伦敦瑞士雷塔的分析。最后,根据一般算法理论,示出了关于外部算法与中心核之间的横向动作的分布的应用。

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