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Geological and geotechnical models definition for 3rd level seismic microzonation studies in Central Italy

机译:意大利中部第三级地震微微分区研究的地质与岩土学模型定义

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The 2016-2017 seismic events that struck central Italy led the Government to carry out a project to produce the third level Seismic Microzonation studies in 138 municipalities. These activities have involved many experts in different disciplines such as geology, geomorphology, geophysics, seismology and geotechnical engineering. This project represented the first opportunity to perform nationally coordinated third level Seismic Microzonation studies over a wide area in a quite short time (6 months). It provided the chance to improve methodological procedures, to test the reliability of methods and models for site response analyses and to produce a huge amount of validated data. This paper focuses on the contribution of geological disciplines and concerns: (a) the definition of the main "morphostructural domains" of the Central-Northern Apennines; (b) the creation of an archive of all the lithostratigraphic units occurring in the study area with their conversion into engineering-geological units and their distribution in the different morphostructural domains; (c) the construction of the reference geological and geotechnical models, which are essential to classify the territory into seismically homogeneous microzones and to perform the successive 1D and 2D numerical analyses of the local site response. The geophysical dataset acquired for the study allowed a first statistical characterization of the Vs values typical of the engineering-geological units identified in this study. Some examples of the recurrent geological and geotechnical models are shown to explain the complexity and variety of the geological and geomorphological features of the investigated area and to highlight the different seismostratigraphic behavior of rocks and cover terrains. The analysis of third level Seismic Microzonation data made it possible to identify recurrent subsoil models and to note the main stratigraphic and morphological control-factors of the ground motion modification in the different morphostructural domains.
机译:2016-2017击中中南部的地震事件导致政府开展项目,以在138届市内生产第三级地震微微型研究。这些活动涉及许多不同学科的专家,如地质,地貌,地球物理,地震学和岩土工程。该项目代表了在很短的时间内(6个月)在广泛的面积上进行全国第三级地震微微型研究的第一个机会。它提供了改进方法的机会,以测试站点响应分析的方法和模型的可靠性,并产生大量的验证数据。本文重点介绍了地质学科的贡献和担忧:(a)中央北部亚乃宁的主要“形态属性域”的定义; (b)在研究区中发生的所有岩石滑脱单位的档案,转换为工程 - 地质单位及其在不同的样力结构域中的分布; (c)建设参考地质和岩土工程模型,这对于将该领土分类到地震均匀的微区并进行局部地点反应的连续1D和2D数值分析至关重要。获取研究的地球物理数据集允许本研究中鉴定的工程地质单位的典型VS值的第一个统计表征。经常性地质和岩土技术模型的一些例子被证明可以解释调查区域的地质和地貌特征的复杂性和各种各样,并突出岩石和盖子地形的不同地震术行为。对第三级地震微处理数据的分析使得可以识别复发性底体模型,并记下不同的样力结构域的地面运动改性的主要地层和形态控制因素。

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