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Sudden collapse of a 19th-century masonry structure during its renovation process

机译:19世纪的修改过程中突然崩溃了19世纪的砌体结构

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摘要

AbstractThe investigation and analysis conducted after a catastrophe of a 19th-century masonry structure are presented. During restoration work of a masonry building there was a sudden collapse of the structure, involving parts of a three-storey high outer supporting wall of the building together with the two floors resting on steel beams, as well as the wooden floor of the attic. The modernization works were carried out according to a detailed project documentation.Prior to the beginning of the destruction process there had been no demolition activities going on. Hence, it was essential to determine the actual causes of the collapse as well as to give details concerning the time when the catastrophe occurred.Detailed inventory measurements and non-destructive “in situ” tests, followed by laboratory tests, are described. The tests involved both ceramic materials and lime mortar, as well as steel and wooden parts of the structural elements.Numerical computations of the approximate bearing capacity of the modernized system prior to the catastrophe were performed in a comprehensive way to build a model using the Finite Element Method (FEM). The model employed mostly standard four-node plate-and-disc components of the flat shell type. The computations concerned the static field. Also the effects related to the stability of the structure in terms of large displacements were analyzed. For the computations, an original software was used.As a result of the conducted studies and analyses, it was established and confirmed quantitatively that the main causes of the building disaster were faults made when preparing openings for shop windows in the non-homogeneous structure of the wall. However, the most important issue was flaws of the mortar binding the ceramic elements of the wall.The paper concludes that in the course of wide-ranging restoration of historical facilities, it should be entirely prohibited to treat the building's elements as structural ones. In cases of “limited structural reliability” with respect to the historical facilities, loads should be taken by an independent structure. The modernization works must be carried out under on-going constant supervision of an experienced designer and project manager.The paper ends by presenting a concept of rebuilding of the damaged parts of the facility.Graphical abstractDisplay OmittedHighlights?The paper describes collapse of a 19th century masonry structure during its renovation.?Inventory measurements, NDT “in situ”,
机译:<![cdata [ 抽象 介绍了19世纪砌体结构灾难后进行的调查和分析。在砌体建筑的恢复工作期间,结构突然崩溃,涉及建筑物的三层高外壳墙的部分,以及靠在钢梁上的两个地板以及阁楼的木地板。现代化作品根据详细的项目文件进行。 在毁灭过程开始之前没有拆迁活动正在进行中。因此,必须确定崩溃的实际原因,并提供有关灾难发生的时间的细节。 描述了详细的库存测量和原位”测试,其次是实验室测试的“原位”测试。该测试涉及陶瓷材料和石灰砂浆,以及结构元素的钢和木质部位。 数值计算在灾难之前的现代化系统的近似承载力以综合方式进行使用有限元方法(FEM)构建模型。该模型主要采用扁平壳型的标准四节点板和盘组件。计算涉及静态字段。还分析了与大型位移方面的结构稳定性相关的效果。对于计算,使用原始软件。 由于进行了研究和分析,它建立并确认了定量地,建筑物灾难的主要原因是在墙壁非同质结构中准备商店窗口的开口时出现故障。然而,最重要的问题是砂浆的缺陷粘附着墙壁的陶瓷元素。 纸张的结论是历史设施的广泛恢复过程,应该完全禁止将建筑物的元素视为结构性。在关于历史设施的“结构可靠性”的情况下,应通过独立结构采取负荷。现代化工作必须在经验丰富的设计师和项目经理的持续监督下进行。 纸张结束提出了重建设施损坏的部分的概念。 图形抽象 显示 亮点 本文介绍了19世纪砌体结构在其装修期间崩溃。 库存测量,NDT“原位”,

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  • 来源
    《Engineering failure analysis》 |2017年第2017期|共14页
  • 作者单位

    Department of Structural Mechanics Faculty of Civil and Environmental Engineering Bialystok University of Technology;

    Department of Structural Mechanics Faculty of Civil and Environmental Engineering Bialystok University of Technology;

    Duna – Engineering Office;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程力学;
  • 关键词

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