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Analysis of structurally discontinuous reinforced concrete building frames using the ASI technique

机译:使用ASI技术分析结构不连续的钢筋混凝土建筑框架

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摘要

The Adaptively Shifted Integration (ASI) technique, which produces the highest computational efficiency in the finite element analyses of framed structures including static and dynamic collapse problems, is applied to structurally discontinuous problems of reinforced concrete building frames. A new numerical scheme based on the updated Lagrangian formulation (ULF) adaptation of the ASI technique is developed, by modeling the fracture of a section by a plastic hinge located at the exact position with a simultaneous release of resultant forces in the element. By using the algorithms described in this paper, the analyses became possible even by the conventional displacement-based finite element codes, and sufficiently reliable solutions for practical use have been obtained in the explosive demolition and seismic damage analyses of a five storied, five span RC building frame. The present technique can be easily implemented with minimum effort into the existing finite element codes utilizing the linear Timoshenko beam element.
机译:自适应位移积分(ASI)技术在框架结构的有限元分析(包括静态和动态倒塌问题)中产生最高的计算效率,被应用于钢筋混凝土建筑框架的结构不连续问题。通过使用位于精确位置的塑料铰链模拟断面的断裂并同时释放单元中的合力,开发了基于ASI技术的更新拉格朗日公式(ULF)适应性的新数值方案。通过使用本文描述的算法,即使使用常规的基于位移的有限元代码也可以进行分析,并且在五层五跨钢筋混凝土的爆炸物拆除和地震破坏分析中获得了足够可靠的实用解决方案建筑框架。利用线性Timoshenko梁单元,可以以最小的努力轻松地将本技术实施到现有的有限元代码中。

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