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Assessment of axial load effect on nonlinear modeling and seismic response of reinforced concrete-structures based on fuzzy set theory using genetic algorithm

机译:基于遗传算法的模糊集理论的轴向荷载对钢筋混凝土结构非线性建模和地震反应的评估。

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摘要

The present study develops a more efficient method for the accurate modeling of nonlinear behavior of structural elements, being an essential ingredient in reliable assessment of collapse fragility curve, as an important issue in the performance-based earthquake engineering. To this end, beams and columns are often simulated by lumped plasticity models, consisting of one elastic element and two nonlinear spring elements at two ends to consider the effects of strength and stiffness degradation. Since introducing spring elements is obviously associated with the correct estimation of axial load ratio of each structural component during nonlinear dynamic analysis, the specific aim of this paper is to evaluate the effectiveness of any variation in the generated axial forces (axial efforts) in the elements on structural seismic response. For this purpose, fuzzy set theory has been utilized to assess the median of collapse fragility curves as fuzzy number by well-known -cut approach. Then, herein, genetic algorithm has been employed to search for the maximum and minimum of this median in each membership degree . Application of this methodology is illustrated through an example. It is shown that the primary advantage of the proposed assessment processes is to incorporate the influence of record to record variability, as aleatory uncertainty, and fuzziness in axial effort of the structural elements, as epistemic uncertainty, on the estimation of more realistic responses for structural systems with cyclic behavior and the evaluation of collapse performance of reinforced concrete buildings under seismic loads.
机译:本研究开发了一种更有效的方法来对结构元件的非线性行为进行精确建模,这是可靠评估塌陷脆性曲线的重要组成部分,这是基于性能的地震工程中的重要问题。为此,通常使用集总可塑性模型来模拟梁和柱,该模型由两端的一个弹性元件和两个非线性弹簧元件组成,以考虑强度和刚度退化的影响。由于引入弹簧元件显然与在非线性动力分析过程中正确估计每个结构部件的轴向载荷比有关,因此本文的主要目的是评估在元件中产生的轴向力(轴向力)的任何变化的有效性。关于结构地震响应。为此目的,已经利用模糊集理论通过众所周知的切割方法将坍塌脆性曲线的中值评估为模糊数。然后,在本文中,已经采用遗传算法在每个隶属度中搜索该中位数的最大值和最小值。通过示例说明了该方法的应用。结果表明,提出的评估程序的主要优点是将记录的影响纳入记录的可变性(如不确定性),以及将结构元件的轴向作用的模糊性(如认知的不确定性)纳入对结构的更实际响应的估计中循环行为的系统以及地震作用下钢筋混凝土建筑物的倒塌性能评估。

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