加筋偏心开口填充框架结构的受力与性能分析研究

I. P. A. P. Wirawan, I. G. G. Wiryadi, I. K. D. K. Tubuh, Ni Luh Made Ayu Mirayani Pradnyadari
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引用次数: 1

摘要

本文讨论了采用壳单元和支撑单元模拟的偏心填充墙开口框架结构的受力特性。在开始时,通过遵循实验室测试结果创建验证模型。然后,对一个简单的单层带开口填充框架结构进行变比例建模,取形成的支撑角,得到支撑宽度方程,该方程与支撑角变化时壳单元模型的行为相对应。然后将支撑宽度方程应用于3层填充框架结构。采用线性静力分析和非线性静力分析对比了柱壳单元模型和柱壳单元模型的性能。通过对偏心开口填充墙框架的刚度系数Ce的修正,确定了偏心开口填充墙框架的支撑宽度方程。Weo方程在填充框架模型中的应用表明,支撑模型与壳单元模型具有相当的性能。漂移比比较表明,支撑角越小,结构刚度越大。推覆分析表明,填充框架模型比开放框架模型能够承受更大的基础剪力。
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ANALYTICAL STUDY ON BEHAVIOUR AND PERFORMANCE OF INFILLED FRAME STRUCTURE WITH REINFORCED ECCENTRIC OPENING
This numerical analysis has discussed the behaviour of the frame structure with eccentric infill wall opening modelled with shell and strut elements. In the beginning, validation models were created by following the laboratory tests results. Then, a simple one-storey infill frame structure with an opening was modelled with varying ratios by taking the strut angle formed to obtain an equation for the strut width that corresponds to the behaviour of shell element model with strut angles variation. The strut width equation was then applied to the 3-storey infill frame structures. The behaviour comparison between the strut and shell element model was then investigated by linear and nonlinear static analysis. The strut width equation for infill wall frame with eccentric openings (Weo) is determined by modifying the stiffness coefficient (Ce) based on the opening ratio. The application of the Weo equation to the infill frame model showed that the strut model had a comparable behaviour to the shell element model. The drift ratio comparison showed that the smaller the strut angle, the greater the structure stiffness. The pushover analysis shows the infilled frame model was able to withstand a larger base shear force than the open frame model.
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来源期刊
Journal of Applied Engineering Science
Journal of Applied Engineering Science Engineering-Engineering (all)
CiteScore
2.00
自引率
0.00%
发文量
122
审稿时长
12 weeks
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