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Force-Based Beam Finite Element (FE) for the Pushover Analysis of Masonry Buildings

机译:基于力的梁有限元(FE)用于砌体建筑的推覆分析

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摘要

A simplified approach for analyzing the nonlinear response of masonry buildings, based on the equivalent frame modeling procedure and on the nonlinear equivalent static analyses, is presented. A nonlinear beam finite element (FE) is formulated in the framework of a force-based approach, where the stress fields are expanded along the beam local axis, and introduced in a global displacement-based FE code. In order to model the nonlinear constitutive response of the masonry material, the lumped hinge approach is adopted and both flexural and shear plastic hinges are located at the two end nodes of the beam. A classical elastic-plastic constitutive relationship describes the nonlinear response of the hinges, the evolution of the plastic variables being governed by the Kuhn-Tucker and consistency conditions. An efficient element state determination procedure is implemented, which condenses the local deformation residual into the global residual vector, thus avoiding the need to perform the inner loops for computing the element nonlinear response. The comparison with some relevant experimental and real full-scale masonry walls is presented, obtaining a very good agreement with the available results, both in terms of global pushover curves and damage distributions.
机译:提出了一种基于等效框架建模程序和非线性等效静力分析的简化砌体建筑非线性响应分析方法。在基于力的方法框架中制定了非线性梁有限元(FE),其中应力场沿梁局部轴扩展,并引入基于整体位移的FE代码中。为了模拟砌体材料的非线性本构响应,采用集总铰链方法,弯曲和剪切塑性铰链均位于梁的两个末端节点。经典的弹塑性本构关系描述了铰链的非线性响应,塑性变量的演变受Kuhn-Tucker和一致性条件支配。实施了有效的元件状态确定程序,该程序将局部变形残差浓缩为全局残差矢量,从而避免了执行用于计算元件非线性响应的内部循环的需要。提出了与一些相关的实验和实际的全尺寸砌体墙的比较,无论是在整体推覆曲线还是在破坏分布方面,都与现有结果非常吻合。

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