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Essais in situ et analyses non-lineaires d'un, bâtiment multi-etage endommage lars du seisme d'Haiti du 12 janvier 2010

机译:2010年1月12日海地地震中受损的多层建筑的现场测试和非线性分析

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摘要

Despite all the damages encountered during the 2010 Haiti earthquake, the 12-storey reinforced-concrete Digicel building behaved well, sustaining only reparable damages. Visual assessment and ambient vibration tests were carried out to characterize the damages sustained and to identify the building's key dynamics properties (natural vibration frequencies, mode shapes, and damping ratios).;ETABS was used to generate FE models before and after the AVT to evaluate the capabilities of common modelling assumptions to predict the dynamic behaviour of structures. Manual model updating was carried out to present a model representing the building's actual dynamic behaviour. The study showed that the FE method is reliable for predicting the dynamic behaviour of structures, but is very sensitive to the assumptions used during modelling. The model could predict the vibration frequencies precisely, but an accurate representation of the mode shapes required careful model updating.;The updated model lead the way to a more sophisticated model able to produce nonlinear time history analyses using the software SeismoStruct. The numerical analyses helped assessing the capabilites of common models to reproduce such events and damages, explaining the observed damages and estimating the probable intensity of the tremor.;Several nonlinear analyses involving various ground motion intensities were conducted and the results were compared with the damages reported during the on-site survey. The overall response of the mixed stiff frame-wall structure was clearly dominated by the high stiffness of the shear walls, showing that this type of structural system helps in keeping reasonable inter-storey drift levels. Overall, the building's structure seems to have responded linearly to all the ground motions investigated, but deformation incompatibilities at the interface between beams and shear walls lead to important local damages.;Keywords: Ambient vibration test, Haiti, Nonlinear analyses, Reinforced concrete, High-rise building.
机译:尽管在2010年海地地震中遭受了所有损失,但这座12层高的钢筋混凝土Digicel建筑物仍表现良好,仅遭受了可修复的损失。进行了视觉评估和环境振动测试,以表征遭受的破坏并确定建筑物的关键动力特性(自然振动频率,振型和阻尼比).; ETABS用于在AVT之前和之后生成有限元模型以进行评估通用建模假设预测结构动态行为的能力。进行了手动模型更新,以呈现代表建筑物实际动态行为的模型。研究表明,有限元方法对于预测结构的动力行为是可靠的,但对建模过程中使用的假设非常敏感。该模型可以精确地预测振动频率,但是要精确表示模态形状,需要进行仔细的模型更新。;更新后的模型导致了一种更复杂的模型,该模型可以使用软件SeismoStruct进行非线性时程分析。数值分析有助于评估常见模型的能力,以再现此类事件和破坏,解释观测到的破坏并估计震颤的可能强度。进行了多次涉及各种地面运动强度的非线性分析,并将结果与​​所报告的破坏进行了比较在现场调查中。混合刚性框架-墙结构的整体响应明显受剪力墙的高刚度支配,这表明这种类型的结构系统有助于保持合理的层间漂移水平。总体而言,该建筑物的结构似乎对所调查的所有地面运动均具有线性响应,但梁与剪力墙之间的界面处的变形不兼容会导致重要的局部破坏。;关键词:环境振动测试,海地,非线性分析,钢筋混凝土,高高层建筑。

著录项

  • 作者

    Boulanger, Benoit.;

  • 作者单位

    Universite de Sherbrooke (Canada).;

  • 授予单位 Universite de Sherbrooke (Canada).;
  • 学科 Civil engineering.
  • 学位 M.Sc.A.
  • 年度 2012
  • 页码 64 p.
  • 总页数 64
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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