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Inelastic analysis of brick masonry: Meso/macro-scale approach .

机译:砖砌体的非弹性分析:细观/宏观尺度方法。

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摘要

This thesis is focused on modeling of progressive failure in brick masonry structures. Two distinct strategies are examined, namely meso-modeling and macro-modeling approach.;Later, an alternative approach is developed, based on theory of homogenization, in which a lower bound assessment is employed to predict the directional strength characteristics of the brick masonry. The performance of the model is verified using numerical homogenization which involves a finite element analysis of a periodic unit cell. For both these approaches, the failure envelopes for brick masonry at different orientations of the bed joints are obtained.;Finally, a methodology is proposed for a systematic identification of material parameters of a macroscopic failure criterion describing the anisotropic strength characteristics of the brick masonry. This criterion is formulated in the framework of Critical Plane Approach (CPA) and its performance is verified against the experimental data of Page (1981 and 1983).;In the first part, an advanced constitutive model capable of addressing both pre and post-localization behavior is developed and implemented in a commercial finite element package. A mesoscopic modeling approach is then adopted, in which the structural behavior is examined at the level of constituents, i.e. brick and mortar. The performance of the model is verified by simulating a series of experimental tests reported in the literature. Those include the tests conducted by van der Pluijm (1993), Atkinson et al. (1989), and Page (1983).
机译:本文的重点是对砖石结构渐进破坏的建模。研究了两种截然不同的策略,即细观模型方法和宏观模型方法。随后,根据均质化理论开发了一种替代方法,其中采用下限评估法来预测砖砌体的方向强度特性。使用数值均质化验证模型的性能,数值均质化涉及周期性晶胞的有限元分析。对于这两种方法,都获得了砖砌体在床缝的不同方向上的破坏包络。最后,提出了一种方法,用于系统地描述描述砖砌体各向异性强度特征的宏观破坏准则的材料参数。该标准是在关键平面方法(CPA)的框架内制定的,并根据Page(1981和1983)的实验数据验证了其性能。在第一部分中,一种能够解决本地化之前和本地化的高级本构模型行为是在商业有限元软件包中开发和实现的。然后采用介观建模方法,其中在构件(即砖和灰浆)级别上检查结构行为。该模型的性能通过模拟文献中报道的一系列实验测试来验证。这些包括由Van der Pluijm(1993),Atkinson等人进行的测试。 (1989)和Page(1983)。

著录项

  • 作者

    Shieh-Beygi, Babak.;

  • 作者单位

    McMaster University (Canada).;

  • 授予单位 McMaster University (Canada).;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 145 p.
  • 总页数 145
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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