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Structural safety assessment of geometrically complex masonry vaults by non-linear analysis. The Chapel of the Wurzburg Residence (Germany)

机译:通过非线性分析评估几何形状复杂的砖砌穹顶的结构安全性。维尔茨堡住宅的礼拜堂(德国)

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This paper addresses the structural safety assessment of the Chapel of the Wurzburg Residence (Germany), one of the most important churches of the Central European Baroque. It was declared as World Heritage Site by UNESCO in 1981, one of its most unique and distinctive characteristics is the geometry of its complex vaults. Intersections between vaults are warped and vaults surfaces were built using only one layer of brick masonry. In this work, a nonlinear finite elements (FE) model has been developed and used to assess the structural safety of the building. In order to update the model by identifying the dynamic response of the building, experimental ambient vibration tests have been previously subsequently carried out. Operational Modal Analysis (OMA) has been used to experimentally identify both modal displacements and natural frequencies. The numerical FE model is them adjusted using genetic algorithms until its dynamic response resembles that experimentally observed, thus providing a valid model to further analyse the structural behaviour of the building. After briefly descripting the Chapel, the methodology followed to update the numerical model and the obtained results from a non-linear analysis on this over-complex vaulted structure are the main goals of the paper. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文讨论了维尔茨堡住宅(德国)教堂的结构安全性评估,该教堂是中欧巴洛克最重要的教堂之一。它于1981年被联合国教科文组织宣布为世界遗产,其最独特的特征之一就是其复杂的穹顶的几何形状。拱顶之间的交叉点被扭曲,拱顶表面仅使用一层砖石建造。在这项工作中,开发了非线性有限元(FE)模型,并将其用于评估建筑物的结构安全性。为了通过识别建筑物的动态响应来更新模型,先前已经进行了实验性环境振动测试。操作模态分析(OMA)已用于通过实验确定模态位移和固有频率。他们使用遗传算法调整了有限元数值模型,直到其动态响应类似于实验观察到的数值,从而为进一步分析建筑物的结构行为提供了有效的模型。在简要描述了礼拜堂之后,本文的主要目标是更新数值模型的方法以及对这种过度复杂的拱形结构进行非线性分析获得的结果。 (C)2017 Elsevier Ltd.保留所有权利。

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