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Detailed and simplified non-linear models for timber-framed masonry structures

机译:木结构砌体结构的详细和简化非线性模型

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摘要

The need for improved methodologies to describe the post elastic behaviour of existing structures in the framework of seismic vulnerability assessment has long been recognised. The study presented herein deals with the non-linear seismic response of timber-framed (T-F) masonry structures, such as those found in traditional edifices of cultural heritage. T-F masonry generally consists of masonry walls reinforced with timber elements, including horizontal and vertical elements, as well as X-type diagonal braces. Since the Bronze Age T-F buildings were common in regions where moderate to strong earthquakes were frequent. There is ample historical evidence that the embodiment of timber elements in masonry walls is closely related to earthquakes. The paper focuses on the description of the seismic response of T-F structures by means of a detailed analytical model. Although elastic analysis can adequately identify regions with high stresses, it fails to capture the redistribution of stresses and the ensuing failure mechanism. The simulation of T-F masonry is made here using a plasticity model. Nonlinear laws for the materials, such as a trilinear stress-strain curve for monotonic loading of timber and a Mohr-Coulomb contact law for wooden members, are used to express their behaviour under moderate and high stress levels. An associated flow rule is assumed and Hill's yield criterion is adopted with isotropic work-hardening. Masonry infills are not included in the model due to their insignificant contribution after the initial elastic stage of the response. The proposed finite element model is intended for a detailed non-linear static analysis of parts of a building. A simplified model using beam and link elements with non-linear axial springs is also developed, which is appropriate for 2-D non-linear analysis of common buildings. Both models are validated using experimental results of three T-F masonry walls obtained from the literature. Finally a non-linear static analysis of the façade of an existing building situated in the island of Lefkas, Greece is performed.
机译:人们早已认识到需要在地震易损性评估框架内描述现有结构的后弹性行为的改进方法。本文介绍的研究涉及木结构(T-F)砖石结构的非线性地震响应,例如在传统文化遗产建筑中发现的结构。 T-F砌体通常由用木元素(包括水平和垂直元素)以及X型斜撑加固的砌体墙组成。由于青铜时代的T-F建筑物在中度到强烈地震频繁的地区很普遍。有大量历史证据表明,砖石墙中木材元素的体现与地震密切相关。本文通过详细的分析模型,重点描述了T-F结构的地震反应。尽管弹性分析可以充分识别高应力区域,但是它无法捕获应力的重新分布和随之而来的破坏机制。在此使用可塑性模型对T-F砌体进行仿真。材料的非线性定律,例如用于木材单调加载的三线性应力-应变曲线和木制构件的Mohr-Coulomb接触定律,用于表达其在中等和高应力水平下的行为。假定有相关的流动规则,并采用各向同性的工作硬化方法采用了希尔的屈服准则。砌体填充物不包括在模型中,因为它们在响应的初始弹性阶段后贡献不大。拟议的有限元模型旨在对建筑物的各个部分进行详细的非线性静态分析。还开发了一个使用梁和连杆元件以及非线性轴向弹簧的简化模型,该模型适用于常见建筑物的二维非线性分析。使用从文献中获得的三个T-F砌体墙的实验结果验证了这两个模型。最后,对位于希腊莱夫卡斯岛的现有建筑物的外墙进行了非线性静力分析。

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