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Experimental investigation and numerical simulation of an unreinforced masonry structure with flexible diaphragms.

机译:柔性隔板无筋砌体结构的试验研究与数值模拟。

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摘要

Unreinforced masonry (URM) construction, which has been widely used in the United States, presents a large threat to life safety and regional economic development because of its poor seismic resistance. In this research, the nonlinear seismic properties of URM structures were investigated via a quasi-static test of a full-scale two-story URM building and associated analytical and numerical studies.; The tests of the 24ft. by 24ft. in plan 22ft. high URM building revealed that the damage was characterized by (1) the formation of large discrete cracks in the masonry walls and (2) the rocking and sliding of URM piers. Both of these results were consistent with the predictions based on individual component properties obtained in previous research. However, the tests also revealed significant global behavior phenomena, including flange effects, overturning moment effects, and the formation of different effective piers in a perforated wall. This global behavior greatly affected the response of the URM building tested.; In order to understand the nonlinear behavior of the test structure, a series of analytical studies were conducted. First, at the material level, a mechanical key model was proposed to describe the failure of URM assemblages under a biaxial state of stress. Second, at the component level, an effective pier model was developed to illustrate the mixed failure modes of a URM pier and its nonlinear force-deformation relationship. Third, at the structure level, a nonlinear pushover model was built using the mechanical models at the material and component levels to describe the nonlinear properties of a URM building. This nonlinear pushover model and a three-dimensional finite element model were employed to analyze the test structure. Both gave results in good agreement with the test data. Improvements to current provisions for the evaluation of existing masonry structures were proposed.
机译:在美国已广泛使用的无筋砌体(URM)建筑由于其抗震性差而对生命安全和区域经济发展构成了巨大威胁。在这项研究中,URM结构的非线性抗震特性是通过对一个完整的两层URM建筑进行准静态测试以及相关的分析和数值研究来研究的。 24英尺的测试。 24英尺在22英尺平面图中较高的URM建筑表明,破坏的特征是(1)砌体墙中形成了大的离散裂缝;(2)URM墩的摇摆和滑动。这两个结果都与先前研究中基于单个组件特性的预测一致。但是,测试还揭示了显着的整体行为现象,包括凸缘效应,倾覆力矩效应以及在多孔墙中形成不同的有效墩墩。这种全球行为极大地影响了经过测试的URM建筑的响应。为了理解测试结构的非线性行为,进行了一系列分析研究。首先,在材料层面上,提出了一个机械关键模型来描述在双轴应力状态下URM组件的破坏。其次,在组件级别,开发了一个有效的墩模型来说明URM墩的混合破坏模式及其非线性力-变形关系。第三,在结构级别上,使用材料和组件级别的机械模型建立了非线性推覆模型,以描述URM建筑物的非线性特性。该非线性推覆模型和三维有限元模型被用来分析测试结构。两者均使结果与测试数据高度吻合。建议对现行的评估现有砌体结构的规定进行改进。

著录项

  • 作者

    Yi, Tianyi.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 671 p.
  • 总页数 671
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:44:05

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