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Seismic failure mode interaction for the equivalent frame modeling of unreinforced masonry structures

机译:无筋砌体结构等效框架建模的地震破坏模式相互作用

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The paper presents a relatively simple and computationally less demanding technique for the modeling and analysis of regular unreinforced masonry (URM) structures. This technique is based on the equivalent frame approach, and incorporates linear beam elements and the plastic hinge concept. The complex seismic failure mechanism of masonry piers is expressed by a single failure mode interaction surface (an “FMI surface”, taking into account the influence of variation in the pier's vertical loading, and its bending moment distribution. The effect of the governing mechanical and geometrical parameters which determine the shape of the FMI surface is presented and discussed. For modeling purposes, the ultimate lateral strength of a masonry element is expressed as a section which cuts through the FMI surface. A single failure mode interaction plastic hinge (an "FMI hinge") for each masonry frame element is introduced by combining specific failure modes, taking into account their minimum envelope. Calculations were carried out using the commercially available computer program SAP2000 Ultimate, and the validity of the proposed modeling procedure was confirmed by means of a comparative analysis of an URM wall assemblage which has already been studied by other researchers, using different modeling techniques and analysis software. The effect of the vertical loading acting on piers was studied, as well as the formation of typical failure mechanisms throughout the structure. The final part of the paper broadens the research to a fictitious 3D URM structure, where the out-of-plane behavior of piers has been considered alongside the standard in-plane failure mechanisms. Results obtained using the incremental N2 method were compared, for a range of ground-motion intensities, with selected results obtained using incremental nonlinear dynamic analysis.
机译:本文提出了一种相对简单且计算量较少的技术,用于常规无筋砌筑(URM)结构的建模和分析。该技术基于等效框架方法,并结合了线性梁元件和塑料铰链概念。砌体墩复杂的地震破坏机制由一个单一的破坏模式相互作用面(“ FMI面”)表示,其中考虑了墩的竖向荷载变化及其弯矩分布的影响。提出并讨论了确定FMI表面形状的几何参数。出于建模目的,砌体元素的极限侧向强度表示为切穿FMI表面的截面。单失效模式相互作用塑料铰链(“ FMI通过结合特定的破坏模式并考虑其最小包络线,为每个砖石框架元素引入铰链。)使用市售的计算机程序SAP2000 Ultimate进行计算,并通过以下方法确认了所提出建模过程的有效性:其他研究人员已经研究过的URM墙组件的比较分析,使用di各种建模技术和分析软件。研究了竖向荷载作用在墩上的影响,以及整个结构中典型破坏机制的形成。本文的最后一部分将研究范围扩大到虚拟的3D URM结构,其中考虑了墩的面外行为以及标准的面内破坏机制。对于一定范围的地面运动强度,将使用增量N2方法获得的结果与使用增量非线性动力分析获得的选定结果进行了比较。

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