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Improved Applied Element Simulation of RC and Composite Structures Under Extreme Loading Conditions

机译:极限载荷条件下钢筋混凝土和复合结构的改进应用单元模拟

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摘要

During the past decade, increasing attention has been focused on the design of buildings to resist progressive collapse. To obtain full knowledge of the total behavior of structures under extreme loading conditions, it is essential to simulate the collapsing process and the trace of yielding, damage and deformation at each structural member. Reliable numerical models are highly required as a cost effective method of obtaining a comprehensive knowledge of the main parameters that affect the response of structures. Simulation of the collapse mechanism requires an advanced technology to accurately predict member instability, failure evaluation, rupture of member joints and impact force of the falling debris. Recently, the improved applied element method (IAEM) has been introduced to simulate the total behavior of large-scale steel towers with high accuracy and low computational effort. However, its application was limited to structures with homogeneous material. In this paper, a new improvement to the IAEM is introduced to develop a novel numerical simulation analysis of failure and collapse of RC and composite structures under hazardous loads. With the new method, structures with homogenous and nonhomogenous materials such as steel, RC and composite can be simulated with high accuracy. The proposed technique takes into account geometric and material nonlinearities. The reliability of the code is investigated by comparing its results with existing experimental and numerical results. Results show that a good agreement between the analytical and the experimental results can be obtained in a less computational time.
机译:在过去的十年中,越来越多的注意力集中在建筑物的设计上,以防止建筑物逐渐倒塌。为了全面了解结构在极端载荷条件下的整体行为,必须模拟崩溃过程以及每个结构构件的屈服,破坏和变形的痕迹。可靠的数值模型是获得有关影响结构响应的主要参数的全面知识的一种经济有效的方法,因此非常需要。塌陷机制的仿真需要一种先进的技术来准确预测构件的不稳定性,失效评估,构件的连接处的破裂以及下落的碎屑的撞击力。最近,引入了改进的应用元素方法(IAEM),以高精度和低计算量来模拟大型钢塔的总体行为。但是,其应用仅限于具有均质材料的结构。在本文中,对IAEM进行了新的改进,以开发一种新的数值模拟分析方法,用于分析RC和复合结构在危险载荷下的破坏和倒塌。使用这种新方法,可以高精度地模拟具有均质和非均质材料的结构,例如钢,RC和复合材料。所提出的技术考虑了几何和材料非线性。通过将代码结果与现有的实验和数值结果进行比较,可以研究代码的可靠性。结果表明,可以在较少的计算时间内获得分析结果与实验结果之间的良好一致性。

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