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Objective Phenomenological Constitutive Law for Collapse Analyses in Distributed Plasticity Steel-Frame Models

机译:分布式塑性钢框架模型中折叠分析的客观现象学

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摘要

Nonlinear static and dynamic analyses are increasingly being used to evaluate the seismic performance of structures. The level of detail that mathematical models should include depends on the required analysis. In a collapse performance evaluation of special steel moment frames, models must include material and element deterioration due to local geometrical instabilities that will allow triggering structural instability. However, capturing these effects in distributed plasticity models is challenging for two reasons: (1) the selection of a constitutive law that incorporates the geometrical phenomenon, and (2) the localization issues related to the material softening. This paper proposes a simple approach to implement phenomenological calibrated constitutive law that includes compression softening applied on a distributed plasticity model. Additionally, a regularization method is proposed to reduce mesh-sensitivity, ensuring an objective response. The constitutive law and the regularization method are tested under different modeling levels: material, element, and structure. Furthermore, the model is used to perform collapse analyses of 2-, 4-, 8-, 12-, and 20-story special steel moment frame buildings. The proposed model can incorporate critical features, such as flexure-axial force interaction, postpeak deterioration, and an objective global response regardless of the element discretization. (C) 2021 American Society of Civil Engineers.
机译:非线性静态和动态分析越来越多地用于评估结构的地震性能。数学模型应该包括的详细程度取决于所需的分析。在特殊钢时刻框架的崩溃性能评估中,模型必须包括由于局部几何不稳定性而导致的材料和元素劣化,这将允许触发结构不稳定。然而,在分布式塑性模型中捕获这些效果是有挑战性的两个原因:(1)选择包含几何现象的本质律法,(2)与材料软化有关的本地化问题。本文提出了一种实现现象学校准本构型法的简单方法,包括在分布式塑性模型上施加压缩软化。另外,提出了一种规则化方法来减少网眼灵敏度,确保客观响应。在不同的建模水平下测试本构剖面法和正则化方法:材料,元素和结构。此外,该模型用于执行2-,4 - ,8,12-和20层专用钢矩框架建筑物的崩溃分析。所提出的模型可以包含关键特征,例如弯曲轴力相互作用,延期泄漏劣化以及无论元素离散化如何延伸。 (c)2021年美国土木工程师协会。

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  • 来源
    《Journal of structural engineering》 |2021年第6期|04021057.1-04021057.14|共14页
  • 作者单位

    Univ Cuenca Dept Civil Engn Cuenca 010203 Ecuador;

    Univ Cuenca Dept Civil Engn Cuenca 010203 Ecuador;

    Univ Cuenca Dept Hydr Resources & Environm Sci Cuenca 010203 Ecuador;

    Univ Cuenca Dept Civil Engn Cuenca 010203 Ecuador|Univ Azuay Dept Civil Engn Cuenca 010150 Ecuador;

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