地震各向异性揭示的地壳破裂和流体的存在:亚平宁(意大利)发震区的历史案例

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS Bollettino Di Geofisica Teorica Ed Applicata Pub Date : 2012-12-01 DOI:10.4430/BGTA0047
M. Pastori, D. Piccinini, L. Valoroso, A. Wuestefeld, L. Zaccarelli, F. Bianco, J. Kendall, D. Bucci, L. Margheriti, M. Barchi, J. Kendall
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引用次数: 10

摘要

开发、测试和改进了自动分析代码Anisomat+,用于计算各向异性参数:快速极化方向和延迟时间。Anisomat+应用于来自意大利亚平宁山脉三个地区的数据。对于每个区域,各向异性参数已被解释,以确定裂缝和应力场,并考虑到地质和构造环境。结果表明,各测点的快速方向平均值均为nw - se向,与最大水平应力方向和主要断裂构造走向一致。L'Aquila地区、Alto Tiberina断裂带和Val d'Agri盆地的归一化延迟时间平均值分别为0.005 ~ 0.007 s/km和0.009 s/km,表明地壳各向异性为3 ~ 4%。此外,研究了各向异性参数的空间分布,并对拉奎拉2009年地震序列的时间分布进行了讨论。
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Crustal fracturing and presence of fluid as revealed by seismic anisotropy: case histories from seismogenic areas in the Apennines (Italy)
An automatic analysis code, Anisomat+, was developed, tested and improved to calculate anisotropic parameters: fast polarization direction and delay time. Anisomat+ was applied on data coming from three zones of the Apennines in Italy. For each area, anisotropic parameters have been interpreted to determine the fracture and stress field taking into account the geological and structural settings. It was recognized that the averages of fast directions are NW-SE–oriented at all sites, in agreement with the orientation of maximum horizontal stress as well as with the strike of the main fault structures. The mean values of normalized delay time range from 0.005 s/km to 0.007 s/km and to 0.009 s/km, respectively for L'Aquila region, Alto Tiberina Fault area and Val d'Agri basin, suggesting a 3-4% of crustal anisotropy. Moreover, for each area, the spatial distribution of anisotropic parameters is examined, and for L’Aquila 2009 seismic sequence also temporal distribution is discussed.
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Bollettino Di Geofisica Teorica Ed Applicata
Bollettino Di Geofisica Teorica Ed Applicata 地学-地球化学与地球物理
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期刊介绍: The "Bollettino di Geofisica Teorica ed Applicata" is an international open access journal dedicated to the publication of original papers dealing with Deep Earth Geophysics, Near Surface Geophysics, Exploration Geophysics, Borehole Geophysics, Geodynamics and Seismotectonics, Seismology, Engineering Seismology, Geophysical Modelling, Geodesy, Remote Sensing, Seismic and Geodetic Networks, Oceanography, and their application in the fields of Energy, Natural Resources, Environment and Climate, Policies and Regulations, Risk and Security, Technological Development.
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