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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Recent seismicity and crustal stress field in the Lucanian Apennines and surrounding areas (Southern Italy): Seismotectonic implications
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Recent seismicity and crustal stress field in the Lucanian Apennines and surrounding areas (Southern Italy): Seismotectonic implications

机译:Lucanian亚平宁山脉及周边地区(意大利南部)的近期地震活动和地壳应力场:地震构造意义

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摘要

We analyzed the instrumental seismicity of Southern Italy in the area including the Lucanian Apennines and Bradano forecleep. making use of the most recent seismological data base available so far. P- and S-wave arrival times, recorded by the Italian National Seismic Network (RSNC) operated by the Istituto Nazionale di Geofisica e Vulcanologia (INGV), were re-picked along with those of the SAMIX temporary array deployed in the region in the period 2001-2004. For some events located in the upper Val d'Agri, we also used data from the Eni-Agip oil company seismic network. We examined the seismicity occurred during the period between 2001 and 2006, considering 514 events with magnitudes M >= 2.0. We computed the V-p/V-s ratio obtaining a value of 1.83 and we carried out an analysis for the one-dimensional (1D) velocity model that approximates the seismic structure of the study area. Earthquakes were relocated and, for well- recorded events, we also computed 108 fault plane solutions. Finally, using 58 solutions, the most constrained, we computed regional stress field in the study area. Earthquake distribution shows three main seismic regions: the westernmost (Lucanian Apennines) characterized by high background seismicity, mostly with shallow hypocenters, the easternmost below the Bradano foredeep and the Murge with deeper and more scattered seismicity, and finally the more isolated and sparse seismicity localized in the Sila Range and in the offshore area along the northeastern Calabrian coast. Focal mechanisms computed in this work are in large part normal and strike-slip solutions and their tensional axes (T-axes) have a generalized NE-SW orientation. The denser station coverage allowed us to improve hypocenters determination compared to those obtained by using only RSNC data, for a better characterization of the crustal and subcrustal seismicity in the study area.
机译:我们分析了意大利南部在包括Lucanian Apennines和Bradano forecleep在内的地区的仪器地震活动。利用到目前为止可获得的最新地震学数据库。重新选择了由意大利国家地震台(INGV)运营的意大利国家地震台网(RSNC)记录的P波和S波到达时间,以及在该地区部署的SAMIX临时阵列的时间。 2001-2004年。对于位于Val d'Agri上部的某些事件,我们还使用了来自Eni-Agip石油公司地震网络的数据。我们考虑了514个M> = 2.0的事件,研究了2001年至2006年之间发生的地震活动。我们计算出V-p / V-s之比,得到的值为1.83,并对一维(1D)速度模型进行了分析,该模型近似于研究区域的地震结构。地震被重新定位,对于记录良好的事件,我们还计算了108个断层平面解。最后,使用最受约束的58个解,我们计算了研究区域的区域应力场。地震分布显示了三个主要地震区域:背景地震活动性最强的西区(卢卡尼亚亚平宁山脉),大多具有较浅的震源;布拉达诺前深部以下的最东端,地震活动性更深,更分散;最后,局部地震活动更加孤立和稀疏在西拉山脉和卡拉布里亚东北海岸的近海地区。这项工作中计算出的震源机制大部分是法线和走滑解,它们的张紧轴(T轴)具有广义的NE-SW方向。与仅使用RSNC数据获得的震源相比,更密集的测站覆盖范围使我们能够改善震源确定性,以便更好地表征研究区域的地壳和亚地壳地震活动。

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