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An efficient seismic analysis of regular skeletal structures via graph product rules and canonical forms

机译:通过图积规则和规范形式对规则骨骼结构进行有效的地震分析

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In this study, graph product rules are applied to the dynamic analysis of regular skeletal structures. Graph product rules have recently been utilized in structural mechanics as a powerful tool for eigensolution of symmetric and regular skeletal structures. A structure is called regular if its model is a graph product. In the first part of this paper, the formulation of time history dynamic analysis of regular structures under seismic excitation is derived using graph product rules. This formulation can generally be utilized for efficient linear elastic dynamic analysis using vibration modes. The second part comprises of random vibration analysis of regular skeletal structures via canonical forms and closed-form eigensolution of matrices containing special patterns for symmetric structures. In this part, the formulations are developed for dynamic analysis of structures subjected to random seismic excitation in frequency domain. In all the proposed methods, eigensolution of the problems is achieved with less computational effort due to incorporating graph product rules and canonical forms for symmetric and cyclically symmetric structures.
机译:在这项研究中,将图积规则应用于规则骨骼结构的动态分析。图形乘积规则最近已在结构力学中用作对对称和规则骨骼结构进行本征求解的强大工具。如果结构的模型是图形产品,则将其称为规则结构。在本文的第一部分中,利用图积规则推导了规则结构在地震激励下的时程动力学分析公式。该公式通常可用于使用振动模式的有效线性弹性动力学分析。第二部分包括通过规范形式的规则骨骼结构的随机振动分析和包含对称结构特殊图案的矩阵的闭合形式本征解。在这一部分中,开发了用于动态分析结构在频域中受到随机地震激励作用的公式。在所有提出的方法中,由于结合了图形乘积规则和对称和循环对称结构的规范形式,从而以较少的计算量即可实现问题的特征解。

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