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首页> 外文期刊>Environmental earth sciences >Integrated geophysical-geological model for seismic local site response: the Caldes alpine slope case (Southern Alps, NE Italy)
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Integrated geophysical-geological model for seismic local site response: the Caldes alpine slope case (Southern Alps, NE Italy)

机译:地震局部现场响应的综合地球物理-地质模型:Caldes高山斜坡案例(意大利东北部南阿尔卑斯山)

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摘要

We present the seismic local response analysis of an alpine slope based on an integrated geophysical and geological model. The studied site is located in Caldes, in the lower Val di Sole valley in the Trentino region, Southern Italian Alps. Caldes represents the typical alpine valley formed by glacial and fluvio-glacial processes characterized by complex geomorphological, lithological and tectonic settings. A detailed reconstruction of the valley slope geology (subsoil geometry and stratigraphy) was obtained using electrical tomography resistivity soundings, controlled source multi-channel analysis of surface waves, microtremor single station measurements, borehole investigations, and geotechnical analyses on undisturbed samples. The geological model was shaken with real accelerometric series to obtain 1D (linear equivalent approach) and 2D (finite element approach) local seismic responses. The results, considering the uncertainties of the geophysical measurements, show different seismic responses between 1D and 2D approaches due to relevant geometrical amplifications, with clearer variations in the 2D approach. The comparison of the results with the building code design spectra shows the limits of the simplified approaches, suggesting that detailed characterizations are necessary, especially for such populous alpine environments.
机译:我们提出了基于综合的地球物理和地质模型的高山斜坡的地震局部响应分析。研究地点位于意大利阿尔卑斯山南部特伦蒂诺州Val di Sole山谷下游的Caldes。 Caldes代表由冰川和河流-冰川过程形成的典型高山峡谷,其特征是复杂的地貌,岩性和构造环境。使用电层析成像电阻率测深,表面波的受控源多通道分析,微震单站测量,钻孔研究以及对未受干扰样品的岩土分析,获得了对山谷斜坡地质学(地下土壤几何学和地层学)的详细重建。将该地质模型与实际加速度计系列摇动,以获得一维(线性等效方法)和二维(有限元方法)局部地震响应。考虑到地球物理测量的不确定性,结果表明,由于相关的几何放大,一维和二维方法之间的地震响应有所不同,二维方法中的变化更加明显。将结果与建筑规范设计频谱进行比较,显示了简化方法的局限性,表明必须进行详细的表征,尤其是对于这种人口众多的高山环境。

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