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首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Three dimensional Gravity Local Inversion Across the Area Struck by the 2016-2017 Seismic Events in Central Italy
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Three dimensional Gravity Local Inversion Across the Area Struck by the 2016-2017 Seismic Events in Central Italy

机译:在意大利中部的2016-2017地震事件击中该地区的三维重力局部反转

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In this work, the crustal volume struck by the 2016-2017 seismic sequence in Central and Northern Apennines is investigated using constrained 3-D inversion of the gravity anomalies. In order to focus on the area comprising the two mainshocks of the sequence, we perform a regional field removal on the data as a preprocessing step. This residual data set is then inverted into a 3-D density contrast model. We perform a series of inversions to test different geological scenarios and parameters, with increasing complexity in the reference geometries. We first test a model comprising turbidites, carbonates and evaporites, and basement and then introduce a low-density layer at the top of the basement. The geometries are obtained in agreement with the available geological and geophysical information in the area. We found that the density distribution with depth is compatible with previous models. Moreover, results support the hypothesis based on borehole evidence of a low-density upper basement across the entire area, possibly consisting of low-grade metamorphic rocks (phyllites). Finally, we compare our modeling results to the spatial distribution at depth of major seismic events between August and November 2016. These events appear to be concentrated within the denser units at both shallow and deep locations, while the deeper events often occur in a region of major density contrast corresponding to the top of the basement.
机译:在这项工作中,通过重力异常的约束3-D反转,研究了2016-2017中央和北部亚阶的地震序列中击中的地壳体积。为了专注于包括序列的两个主轴的区域,我们将在数据上拆除作为预处理步骤。然后将该残余数据集反转成3-D密度对比模型。我们执行一系列反转以测试不同的地质情况和参数,随着参考几何形状的复杂性越来越复杂。我们首先测试包括浊磁石,碳酸盐和蒸发炉的模型,以及地下室,然后在地下室的顶部引入低密度层。几何形状与该地区的可用地质和地球物理信息一致地获得。我们发现,深度的密度分布与以前的模型兼容。此外,结果支持基于整个区域的低密度上下基底的钻孔证据支持假设,可能由低级变质岩石(Phyllites)组成。最后,我们将建模结果与2016年8月至11月之间的主要地震事件深度的空间分布进行比较。这些事件似乎集中在浅层和深层位置的密集单元内,而更深的事件通常发生在一个地区对应于地下室顶部的主要密度对比度。

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