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Geodetic monitoring and geotechnical analyses of subsidence induced settlements of historic structures

机译:沉陷诱发的历史建筑大地测量和岩土工程分析

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摘要

This paper focuses on the integration of geodetic monitoring and geotechnical modeling for the analyses of subsidence induced settlements in historic structures. The aim is the assessment of the behavior over time of the monuments, with particular attention to differential settlements, in order to evaluate the potential risk scenarios in a preventive strategy. The methodology is applied to the UNESCO site of Modena where the Cathedral and the Ghirlandina Tower are characterized by strong visible deformations due to a complex construction history, the peculiar subsoil conditions and the effects of both natural and man induced subsidence. A 3D finite element numerical model has been developed taking into account the soil characteristics gained by laboratory and in situ tests. The model takes into account the influence of previously existing structures, as well as the subsidence phenomena and provides a settlements profile in agreement with the real dataset collected by high-precision leveling. The geodetic monitoring, carried out since 1984, allows to optimize and then to validate the numerical model giving the Conservation Authority a useful tool to manage the safety of the heritage.
机译:本文着重于大地监测与岩土工程模型的集成,以分析历史结构中的沉降诱发沉降。目的是评估古迹随时间变化的行为,尤其要注意差异化的聚落,以便评估预防策略中的潜在风险方案。该方法被应用于联合国教科文组织的摩德纳遗址,其中大教堂和Ghirlandina塔的特点是由于复杂的施工历史,特殊的地下土条件以及自然和人为下陷的影响而引起的强烈可见变形。考虑到通过实验室和原位测试获得的土壤特性,已开发出3D有限元数值模型。该模型考虑了先前存在的结构的影响以及沉降现象,并提供了与高精度找平收集的实际数据集一致的沉降曲线。自1984年以来进行的大地测量可以优化然后验证数值模型,从而为保护局提供了管理遗产安全的有用工具。

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