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Combined method of super element and substructure for analysis of ILTDBS reticulated mega-structure with single-layer latticed shell substructures

机译:用超单元和子结构相结合的方法分析带单层网格壳子结构的ILTDBS网状巨型结构

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For the cylindrical intersecting-latticed-three-dimensional-beams-system (ILTDBS) reticulated mega-structure with single-layer latticed shell substructures, which is an innovative super-long-span structure, the structural configuration is first introduced in this paper. And then to improve the calculation efficiency, a simplified analytical method of combining super element and substructure is presented and studied in detail. In this method the latticed three-dimensional beams (spatial truss) of the main structure are regarded as super element with three generalized nodes, and the substructures embedded in the large grids of the main structure are disposed by static condensation method, i.e. substructure method. The super element stiffness matrix and the stiffness contribution of the substructures to the whole structure are developed. Numerical example shows that the calculation time of the presented method decreases significantly in comparison with the conventional finite element method, and the comparatively accurate results are obtained. In addition, the substructures' participation in bearing loads cooperatively with the main structure can also be considered in this method. So it is a good method with high efficiency and precision for analysis of the ILTDBS reticulated mega-structure with single-layer latticed shell substructures.
机译:对于具有单层网格壳子结构的圆柱形相交格状三维梁系统(ILTDBS)网状巨型结构,它是一种创新的超大跨度结构,本文首先介绍其结构。然后,为提高计算效率,提出并研究了一种将超单元与子结构结合起来的简化解析方法。在这种方法中,将主结构的网​​格三维桁架(空间桁架)视为具有三个广义节点的超单元,并通过静态凝结法(即子结构方法)布置嵌入主结构大网格中的子结构。建立了超单元刚度矩阵和子结构对整个结构的刚度贡献。数值算例表明,与传统的有限元方法相比,该方法的计算时间大大减少,并且得到了较为准确的结果。另外,在这种方法中也可以考虑子结构与主体结构共同参与轴承载荷。因此,对于分析具有单层网格壳子结构的ILTDBS网状巨型结构,是一种高效,高精度的好方法。

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