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Parallel Axial-Flexural Hinge Model for Nonlinear Dynamic Progressive Collapse Analysis of Welded Steel Moment Frames

机译:焊接钢制弯矩框架非线性动力渐进倒塌分析的平行轴-挠铰链模型

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摘要

In this study, a parallel axial-fiexural hinge model capable of representing postyield flexural behavior and considering interaction effects of axial force and moment is proposed for a simplified nonlinear progressive collapse analysis of welded steel moment frames. To this end, the load-resisting mechanism of the column-removed double-span beams was investigated based on the material and geometric nonlinear parametric finite-element analysis. A multilinear parallel point hinge model which captures the moment-axial tension interaction was then proposed. The emphasis was to develop a reliable and computationally efficient macromodel for practical progressive collapse analysis. The application of the proposed hinge model to nonlinear dynamic progressive collapse analysis was illustrated by using OpenSEES program. The accuracy as well as the efficiency of the proposed model was verified based on inelastic dynamic finite-element analysis results. The importance of including catenary action effects for proper progressive collapse resistant analysis and design was also emphasized.
机译:在这项研究中,提出了一种能够表示屈服后挠曲行为并考虑轴向力和弯矩相互作用影响的平行轴弯铰链模型,用于简化的钢制弯矩框架的非线性渐进倒塌分析。为此,在材料和几何非线性参数有限元分析的基础上,研究了去柱双跨梁的抗压机理。然后提出了一个捕获力矩-轴向拉力相互作用的多线性平行点铰链模型。重点是为实际的渐进式倒塌分析开发可靠且计算有效的宏模型。利用OpenSEES程序说明了所提出的铰链模型在非线性动力渐进倒塌分析中的应用。基于非弹性动力有限元分析结果,验证了所提模型的准确性和有效性。还强调了包括悬链作用效应对适当的渐进抗倒塌分析和设计的重要性。

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