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首页> 外文期刊>Journal of Volcanology and Geothermal Research2012V243-244NOCT,15 >V_s models in the historical centre of Naples (Southern Italy) from noise cross-correlation
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V_s models in the historical centre of Naples (Southern Italy) from noise cross-correlation

机译:来自噪声互相关的那不勒斯(意大利南部)历史中心的V_s模型

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摘要

Ambient noise measurements have been performed in the historical centre of Naples (Southern Italy) along 40 paths (inter-receiver distances) with a length ranging from similar to 300 m to similar to 1550 m, for recording time variable from few hours to several months.Synchronous noise recordings at two receivers, 1-bit normalized, have been cross-correlated in order to estimate the empirical Green's function (surface wave train) of the medium between them. The fundamental-mode Raleigh waves have been extracted at periods ranging from 0.15 s to 1 s by using the frequency-time analysis technique. Average group velocity dispersion curves with error bar have been evaluated along 28 paths and inverted with a non-linear approach to get Vs profiles extending to depths of similar to 50-300 m.Comparison of Vs with some deep drillings and two down-hole measurements lets to argue important findings. First of all there is a good agreement with shallow (about 35 m) point down-hole measurements. The historical centre of Naples results to be characterized by a cover of man-made ground and pyroclastics of recent activity with thickness of 15-30 m and V-s lower than 400 m/s. The products of the Neapolitan Yellow Tuff eruption have a thickness of about 80 m and are characterized by V-s of 500-700 m/s in the shallower, altered and fractured part and of 700-900 m/s in the deeper, compact part. Below them, separated by a thin layer of the Campanian Ignimbrite that cannot be resolved by the data, ancient tuffs or marine sands are present which are locally responsible of velocity decrease. V-s of 1100-1300 m/s, ascribable to intercalations of volcanic and sedimentary (marls, conglomerates and manly sands) rocks, are detected at similar to 200 m depth in the ancient part of the historical centre, rising to -100 m depth, in the north-east of it.This study also gives an important contribution to microzoning studies. The top of the lithoid Neapolitan Yellow Tuff cannot be considered as the top of the seismic bedrock, being characterized by 500 m/s V-s 800 m/s. The seismic bedrock with V-s = 800 m/s is deeper, sometimes at depths 100 m. (C) 2018 Elsevier B.V. All rights reserved.
机译:已在那不勒斯(意大利南部)的历史中心进行了环境噪声测量,沿40条路径(接收机间距离)进行了测量,记录的时间从几小时到几个月不等,长度从大约300 m到大约1550 m。为了估计两个接收器之间的介质的经验格林函数(表面波列),已将两个接收器的同步噪声记录(按1位归一化)进行了互相关。通过使用频率时间分析技术,已在0.15 s到1 s的周期内提取了基模罗利波。沿误差路径的平均群速度弥散曲线已沿28条路径进行了评估,并采用非线性方法进行了求反,从而获得了延伸至大约50-300 m深度的Vs剖面.Vs进行了一些深层钻探和两次井下测量的比较让我们争论重要的发现。首先,浅点(约35 m)井下测量具有良好的一致性。那不勒斯的历史中心的特征是覆盖了最近活动的人造地面和火山碎屑,厚度为15-30 m,V-s低于400 m / s。那不勒斯黄凝灰岩喷发的产物厚度约为80 m,其特征是在较浅,蚀变和破裂的部分中的V-s为500-700 m / s,而在较深的致密部分中的V-s为700-900 m / s。在它们的下方,被一个不能被数据分辨的薄薄的Campanian Ignimbrite隔开,存在着古老的凝灰岩或海沙,它们是造成速度下降的局部原因。 Vs为1100-1300 m / s,归因于火山岩和沉积岩(泥灰岩,砾岩和男子汉砂岩)的夹层,在历史中心的古代部分探测到的深度接近200 m,上升到-100 m,该研究也为微区划研究做出了重要贡献。类固醇那不勒斯黄凝灰岩的顶部不能被认为是地震基岩的顶部,其特征是500 m / s = 800 m / s的地震基岩更深,有时深度> 100 m。 (C)2018 Elsevier B.V.保留所有权利。

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