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Seismic Modelling of a Masonry Monument Including the Interaction of the Vaults, Longitudinal Walls and Soil

机译:砌体纪念碑的地震建模,包括拱顶,纵壁和土壤的相互作用

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摘要

The efficient preservation of masonry monuments presents several challenges given that they are characterized by much larger uncertainties than ordinary buildings and conventional analysis tools may fail in providing a reliable characterization of their structural behavior. A complete understanding of the structural behavior of masonry monuments requires integration of historical, topographical, structural, and geotechnical information. From 2010, an interdisciplinary committee has been established to study the Cathedral of Modena, a masterpiece of Romanesque architecture in Italy. Great effort has been devoted to the assessment of the structural health of the Cathedral, revealing that the vaults are the most vulnerable components, and that the dynamic response may be significantly affected by differential soil properties at the supports. The Discrete Element Method provides a useful numerical tool to assess the dynamic behavior of masonry buildings, though previous work has been primarily focused on the structural response with less attention devoted to soil-structure interaction. In this study, a simplified modeling technique is employed to account for soil structure interaction within the DEM framework. More specifically, a specific cross section of the Cathedral, characterized by different soil properties at the supports and the absence of tie-rods, is studied. The results indicate the importance of the soil effects on the structural response.
机译:砌筑古迹礼物的有效保护因为它们是由比普通建筑和常规分析工具,更大的不确定性特点的几个挑战可能无法提供其结构性能可靠的表征。砖石遗迹的结构行为的完整理解需要的历史,地形,结构和地质信息集成。从2010年起,跨学科的委员会已经成立,研究摩德纳,罗马式建筑的在意大利的杰作大教堂。巨大的努力一直致力于大教堂的结构健康的评估,揭示了金库是最脆弱的部件,以及动态响应可显著影响在支持差分土壤性质。离散单元法提供了一个有用的数字工具来评估砌体结构的动态行为,虽然以前的工作主要集中在较少倍受重视土结构相互作用的结构响应。在这项研究中,一个简化的建模技术以帐户为DEM框架内土壤结构的相互作用。更具体地,大教堂的特定的横截面,其特征在于通过在支撑件和不存在拉杆的不同的土壤性质,进行了研究。研究结果表明,对结构响应土壤效应的重要性。

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