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Response of a reinforced concrete infilled-frame structure to removal of two adjacent columns

机译:钢筋混凝土填充框架结构对拆除两个相邻立柱的响应

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The response of Hotel San Diego, a six-story reinforced concrete infilled-frame structure, is evaluated following the simultaneous removal of two adjacent exterior columns. Analytical models of the structure using the Finite Element Method as well as the Applied Element Method are used to calculate global and local deformations. The analytical results show good agreement with experimental data. The structure resisted progressive collapse with a measured maximum vertical displacement of only one quarter of an inch (6.4 mm). Deformation propagation over the height of the structure and the dynamic load redistribution following the column removal are experimentally and analytically evaluated and described. The difference between axial and flexural wave propagations is discussed. Three-dimensional Vierendeel (frame) action of the transverse and longitudinal frames with the participation of infill walls is identified as the major mechanism for redistribution of loads in the structure. The effects of two potential brittle modes of failure (fracture of beam sections without tensile reinforcement and reinforcing bar pull out) are described. The response of the structure due to additional gravity loads and in the absence of infill walls is analytically evaluated.
机译:同时拆除两个相邻的外部柱后,对六层钢筋混凝土填充框架结构圣地亚哥酒店的响应进行了评估。使用有限元法和应用元法对结构进行分析的模型可用于计算整体变形和局部变形。分析结果与实验数据吻合良好。该结构可抵抗逐渐塌陷,并且测得的最大垂直位移仅为四分之一英寸(6.4毫米)。实验和分析评估和描述了在结构高度上的形变扩展和移除柱后的动态载荷重新分布。讨论了轴向波和弯曲波传播之间的差异。横向和纵向框架在填充墙的参与下的三维空腹(框架)作用被认为是结构中载荷重新分配的主要机制。描述了两种潜在的脆性破坏模式(没有抗拉钢筋的梁截面的断裂和钢筋拔出)的影响。通过分析评估了由于附加重力载荷以及不存在填充墙而引起的结构响应。

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