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Local and global behavior of walls with cut-out openings in multi-story reinforced concrete buildings

机译:多层钢筋混凝土建筑中带有开孔的墙的局部和整体行为

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This paper presents the finite element analysis (FEA) results of a multi-story reinforced concrete (RC) building having precast and cast-in-place load bearing walls. Door-type cut-out openings (height: 2.1 m, width: 0.9-4.4 m) were created at the first and second story of the building. Results from experimental tests on axially loaded RC panels were used to verify the modeling approach. The influence of cut-out openings on the response of individual RC panels, failure modes, and load redistribution to adjacent members under increasing gravitational loads was analyzed. Moreover, the wall bearing capacities obtained from FEA were compared with the values calculated from design equations. The results revealed that the robustness of multi-story buildings having RC load bearing wall systems decrease considerably with the creation of cut-out openings. However, owing to the initial robustness of the buildings, large cut-out openings could be created under normal service conditions without strengthening of the building structure. Furthermore, design equations provided very conservative predictions of the ultimate axial capacity characterizing the solid walls and walls with small openings, whereas similar FEA and analytically predicted capacities were obtained for walls with large openings.
机译:本文介绍了具有预制和现浇承重墙的多层钢筋混凝土(RC)建筑物的有限元分析(FEA)结果。门的开孔(高度:2.1 m,宽度:0.9-4.4 m)分别位于建筑物的第一层和第二层。轴向受力RC面板上的实验测试结果被用于验证建模方法。分析了切口开口对单个RC面板的响应,破坏模式以及在不断增加的重力载荷下向相邻构件的载荷重新分配的影响。此外,将有限元分析获得的墙体承载力与设计方程式计算得出的值进行了比较。结果表明,带有RC承重墙系统的多层建筑的坚固性会随着开孔的出现而大大降低。然而,由于建筑物的最初坚固性,在正常使用条件下可以在不加强建筑物结构的情况下创建较大的开口。此外,设计方程式对实心墙和小孔墙的极限轴向承载力提供了非常保守的预测,而对于大孔墙则获得了相似的有限元分析和分析预测的承载力。

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