多自由度框架的数值分析与参数化研究

Q3 Engineering
George Uwadiegwu Alaneme, A. Bahrami, Uzoma Ibe Iro, Nakkeeran Ganasen, O. N. Otu, R. Udeala, Blessing O. Ifebude, Emmanuel A. Onwusereaka
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引用次数: 1

摘要

多自由度框架的设计在土木工程中是至关重要的,因为这些结构通常用于各种应用,如建筑物,桥梁和工业结构。本文通过将梁单元和桁架单元的刚度矩阵叠加,建立了一个六自由度的梁柱单元刚度矩阵,并将其应用于非定常框架结构的静力分析。本研究采用有限元方法建立了框架结构的数值模型。此外,还研究了框架几何形状、材料特性和加载条件等各种参数对框架结构内力的影响。利用该矩阵法分析了具有不同几何形状和荷载条件的框架结构的三种不同参数化研究案例,并利用MATLAB软件评价了该公式在分析不确定框架时的灵活性和充分性。该分析方法以刚度矩阵与固定端力之间的关系为力向量,推导出系统位移,并将得到的位移转换为局部坐标,得到各构件的力。采用方差分析(ANOVA)将单元刚度矩阵法的计算结果与有限元软件(SAP2000)的计算结果进行了进一步的统计比较。统计结果显示p值> 0.05,说明推导式梁柱单元矩阵公式法与比较结果具有良好的相关性。Doi: 10.28991/CEJ-2023-09-07-012全文:PDF
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Analysis and Parametric Study on Multiple Degrees-of-Freedom Frames
The design of multiple degrees-of-freedom frames is critical in civil engineering, as these structures are commonly used in various applications such as buildings, bridges, and industrial structures. In this study, a six-degrees-of-freedom beam-column element stiffness matrix was formulated by superposition of beam and truss elements stiffness matrices and was adapted to statically analyze indeterminate frame structures. The development of a numerical model for the frame structures was achieved using the finite element method in the current study. Also, the investigation of the effects of various parameters such as frame geometries, material properties, and loading conditions was conducted on the internal forces developed in the frame structures. Three different parametric study cases that presented the frame structures with varying geometries and loading conditions were analyzed utilizing this matrix approach for the sake of emphasis and to evaluate the flexibility and adequacy of this formula to analyze the indeterminate frames using the MATLAB software. The analysis method comprised the derivation of the system displacements employing the relationships between the stiffness matrix and fixed end forces as the force vector and taking the attained displacements, which would be transformed to the local coordinates to obtain the member forces. The computed results from the element stiffness matrix approach were further statistically compared with the results achieved from the finite element software (SAP2000) applying the analysis of variance (ANOVA). The statistical results showed a P-value > 0.05, which indicated a good correlation between the compared results and adequate performance for the derived beam-column element matrix formula method. Doi: 10.28991/CEJ-2023-09-07-012 Full Text: PDF
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来源期刊
Open Civil Engineering Journal
Open Civil Engineering Journal Engineering-Civil and Structural Engineering
CiteScore
1.90
自引率
0.00%
发文量
17
期刊介绍: The Open Civil Engineering Journal is an Open Access online journal which publishes research, reviews/mini-reviews, letter articles and guest edited single topic issues in all areas of civil engineering. The Open Civil Engineering Journal, a peer-reviewed journal, is an important and reliable source of current information on developments in civil engineering. The topics covered in the journal include (but not limited to) concrete structures, construction materials, structural mechanics, soil mechanics, foundation engineering, offshore geotechnics, water resources, hydraulics, horology, coastal engineering, river engineering, ocean modeling, fluid-solid-structure interactions, offshore engineering, marine structures, constructional management and other civil engineering relevant areas.
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