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Comparisons of Elasto-Fiber and Fiber & Bernoulli-Euler reinforced concrete beam-column elements

机译:弹性纤维与纤维和贝努利-欧拉钢筋混凝土梁柱单元的比较

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摘要

In this study, two beam-column elements based on the Elasto-Fiber element theory for reinforced concrete (RC) element have been developed and compared with each other. The first element is based on Elasto Fiber Approach (EFA) was initially developed for steel structures and this theory was applied for RC element in there and the second element is called as Fiber & Bernoulli-Euler element approach (FBEA). In this element, Cubic Hermitian polynomials are used for obtaining stiffness matrix. The beams or columns element in both approaches are divided into a sub-element called the segment for obtaining element stiffness matrix. The internal freedoms of this segment are dynamically condensed to the external freedoms at the ends of the element by using a dynamic substructure technique. Thus, nonlinear dynamic analysis of high RC building can be obtained within short times. In addition to, external loads of the segment are assumed to be distributed along to element. Therefore, damages can be taken account of along to element and redistributions of the loading for solutions. Bossak-α integration with predicted-corrected method is used for the nonlinear seismic analysis of RC frames. For numerical application, seismic damage analyses for a 4-story frame and an 8-story RC frame with soft-story are obtained to comparisons of RC element according to both approaches. Damages evaluation and propagation in the frame elements are studied and response quantities from obtained both approaches are investigated in the detail.
机译:在这项研究中,已经开发了两种基于弹性纤维单元理论的钢筋混凝土(RC)单元梁柱单元,并将它们进行了比较。第一个元素是基于最初针对钢结构开发的弹性纤维方法(EFA),并将此理论应用于其中的RC元素,第二个元素称为纤维和伯努利-欧拉元素方法(FBEA)。在该元素中,三次Hermitian多项式用于获得刚度矩阵。两种方法中的梁或柱单元都被划分为一个称为段的子元素,用于获取单元刚度矩阵。通过使用动态子结构技术,可以将该段的内部自由度动态压缩为元素末端的外部自由度。因此,可以在短时间内获得高RC建筑的非线性动力分析。此外,假定该段的外部载荷与单元一起分布。因此,可以考虑损坏以及解决方案载荷的重新分配。将Bossak-α积分与预测校正方法用于RC框架的非线性地震分析。对于数值应用,通过两种方法对4层框架和8层带软层的RC框架进行了地震破坏分析,以比较RC元素。研究了框架单元中的损伤评估和传播,并详细研究了从两种方法获得的响应量。

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