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Numerical modelling of site effects in the Palatine Hill, Roman Forum, and Coliseum Archaeological Area

机译:帕拉蒂尼山,罗马广场和体育馆考古区场地影响的数值模拟

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Historical sources report that Rome has experienced considerable earthquake ground motion in the past, even though it is quite far from high-magnitude seismogenic sources.Damage distribution seems to be predominantly controlled by ground shaking amplification related to local soil conditions. In this context a multidisciplinary research project has been conducted to determine the seismic microzonation of the Central Archaeological Area of Rome, which includes the Palatine Hill, Roman Forum, and Coliseum. In particular, the present paper details the results of one and bi-dimensional site response analyses carried out within this project, focusing discussion on representative cross-sections. The peculiarity of this work stems from the fact that it represents the first systematic study on the seismic site response of Rome's historical centre based on a robust subsoilmodel which integrates a large amount of available and original geological, geophysical and geotechnical data. Investigation of the physical phenomena responsible for site effects shows that ground motion distribution is mainly controlled by 1D resonance phenomena and 2D effects associated with soft alluvial valleys bordering the Palatine Hill, a deep paleo-valley and, to a lesser extent, topography and the morphology of anthropogenic deposits. The analyses show maximum amplification factors, defined in terms of Housner Intensity, as high as 1.4-1.8 over the period range of 0.1-1.0 s. Such values can be significantly relevant for the monumental and archaeological heritage of this area, as many are highly vulnerable due to their great age.
机译:历史资料表明,尽管罗马离高震级震源还很远,但它在过去经历了相当大的地震地震动。损伤的分布似乎主要受与当地土壤条件有关的地震动放大的控制。在这种情况下,已开展了一项多学科研究项目,以确定罗马中央考古区的地震微带,其中包括帕拉蒂尼山,罗马广场和体育馆。特别是,本文详细介绍了在该项目中进行的一维和二维站点响应分析的结果,重点讨论了代表性横截面。这项工作的特殊性源于以下事实:它代表了罗马历史中心对地震现场响应的首次系统研究,该研究基于强大的地下模型,该模型整合了大量可用的和原始的地质,地球物理和岩土数据。对造成场地效应的物理现象的研究表明,地面运动的分布主要受一维共振现象和二维效应的影响,二维效应与与帕拉蒂尼山,深古河谷以及较小程度的地形和形态相关的软冲积山谷相关人为沉积物。分析显示,在0.1-1.0 s的时间范围内,根据Housner强度定义的最大放大因子高达1.4-1.8。这些价值与该地区的纪念性和考古遗产息息相关,因为许多人由于年龄大而极易受伤害。

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