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The use of HVSR measurements for investigating buried tectonic structures: the Mirandola anticline, Northern Italy, as a case study

机译:HVSR测量在调查地下构造构造中的应用:以意大利北部的米兰多拉背斜为例

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The Mirandola anticline represents a buried fault-propagation fold which has been growing during Quaternary due to the seismogenic activity of a blind segment belonging to the broader Ferrara Arc. The last reactivation occurred during the May 2012 Emilia sequence. In correspondence with this structure, the thickness of the marine and continental deposits of the Po Plain foredeep is particularly reduced. In order to better define the shallow geometry of this tectonic structure, and hence its recent activity, we investigated in a depth range which is intermediate between the surficial morphological observations and seismic profiles information. In particular, we carried out numerous passive seismic measurements (single-station microtremor) for obtaining the horizontal-to-vertical spectral ratio. The results of a combined analysis of the peak frequency and its amplitude nicely fit the available geological information, suggesting that this low-cost geophysical technique could be successfully applied in other sectors of wide morphologically flat alluvial plains to investigate blind and completely buried potential seismogenic structures.
机译:米兰多拉背斜代表了一个隐伏的断层传播褶皱,由于属于较广泛的费拉拉弧的一个盲段的地震活动,在第四纪期间一直在增长。最后一次激活发生在2012年5月的艾米利亚(Emilia)序列中。与这种结构相对应的是,蒲平原前缘的海洋和大陆沉积物的厚度特别减小。为了更好地定义该构造结构的浅层几何结构及其近期活动,我们在一个介于表面形态观测和地震剖面信息之间的深度范围内进行了研究。特别是,我们进行了许多被动地震测量(单站微震),以获得水平与垂直光谱之比。峰值频率及其振幅的组合分析结果很好地符合了现有的地质信息,这表明这种低成本的地球物理技术可以成功地应用于宽阔的形态平坦的冲积平原的其他地区,以研究盲区和完全掩埋的潜在地震发生结构。 。

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