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Earthquake response of RC infilled frame with wall openings in low-rise hotel buildings

机译:低层旅馆建筑中RC Infilled框架的地震响应

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To study the earthquake response of RC infilled frame structures with variable wall opening, 3-D computer models were made for 3,4, and 5 storey typical hotel buildings consisting of six frames of 3 bays. In X-direction, the middle bay was open and the side bays were in-filled with full (solid) walls. In Y-direction, the interior walls consisted of door opening in the comer and the exterior walls consisted of window openings with variable ratios of 20%, 40%, 60%, 80%, and 100%. Prior to modeling the 3-D structure, 2-D validation models using diagonal strut and shell element were made based on test results of simple infilled frames with various openings. For the strut model, the wall with opening was modeled using diagonal strut of reduced width. For the shell element model the wall was modeled as is with gap element at the interface between the frames and the wall. Considering crack development and non linear stress-strain relationship of the materials, the lateral load-displacement diagrams of the shell element models fit the test result better than the strut ones. Models with lintels around the wall openings were also created for validation and the results show that lintels stiffen the frame and strengthen the wall around the openings. The shell element model was then used to create 3-D models of the hotel building with lintels around the wall openings. Analysis and design of the 3-D models show that the earthquake responses of RC frames infilled with walls of opening ratios 20% to 60% are significantly stiffer and stronger than that without infill wall. However, the contribution of infill walls with 80% opening in reducing storey drift and frame reinforcement was much smaller. Accordingly, the infill walls with opening ratios of less than 80% should be considered in the structural modeling to obtain a more accurate analysis and efficient design.
机译:为了研究RC in Infilled Frame结构的地震响应,可变壁开口,3-D电脑型号为3,4和5层典型的酒店建筑,包括六架2架间隔。在X方向上,中间湾打开,侧面湾充满了完全(固体)墙壁。在Y方向上,内壁由选机中的门开口组成,外壁由窗口开口组成,可变比例为20%,40%,60%,80%和100%。在建模3-D结构之前,基于具有各种开口的简单缺陷框架的测试结果进行了使用对角线支柱和壳元件的2-D验证模型。对于支柱模型,使用具有减小宽度的对角线支柱进行建模的壁。对于壳体元素模型,壁的建模如在框架和墙壁之间的界面处具有间隙元件。考虑到材料的裂缝开发和非线性应力 - 应变关系,壳体元件模型的横向载荷 - 位移图符合测试结果比支柱更好。墙壁开口周围的型号的型号也被创建用于验证,结果表明,Lintels加强了框架并加强了开口周围的墙壁。然后,壳体元素模型用于在墙壁开口周围设有带门楣的3D型号的酒店建筑。 3-D模型的分析和设计表明,使用开口比率壁的RC框架的地震反应20%至60%显着更加令人发指,比没有填充壁的情况更强大。然而,在减少楼层漂移和框架增强件中具有80%开口的填充壁的贡献要小得多。因此,应在结构建模中考虑开口比率小于80%的填充壁,以获得更准确的分析和高效设计。

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