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Static stress drop as determined from geodetic strain rates and statistical seismicity

机译:根据大地应变率和统计地震活动性确定的静态应力下降

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摘要

Two critical items in the energetic budget of a seismic province are the strain rate, which is measured geodetically on the Earth's surface, and the yearly number of earthquakes exceeding a given magnitude. Our study is based on one of the most complete and recent seismic catalogs of Italian earthquakes and on the strain rate map implied by a multiyear velocity solution for permanent GPS stations. For each of 36 homogeneous seismic zones we use the appropriate Gutenberg-Richter relation, which is based on the seismicity catalog, to estimate a seismic strain rate, which is the strain rate associated with the mechanical work due to a coseismic displacement. We show that for each seismic zone, the volume storing most of the elastic energy associated with the long-term deformation, and hence the seismic strain rate, is inversely proportional to the static stress drop. The GPS-derived strain rate for each seismic zone limits the corresponding seismic strain rate, and an upper bound for the average stress drop is estimated. We show that the implied regional static stress drop varies from 0.1 to 5.7 MPa for catalog earthquakes in the moment magnitude range [4.5–7.3]. The stress drop results are independent of the regional a and b parameters and heat flow but are very sensitive to the assumed maximum magnitude of a seismic province. The data do not rule out the hypothesis that the stress drop positively correlates with the time elapsed after the largest earthquake recorded in each seismic zone.
机译:地震省精力充沛的预算中的两个关键项目是应变率(每年在地球表面进行大地测量)和每年超过指定震级的地震数量。我们的研究基于意大利地震的最完整和最新的地震目录之一,并且基于永久GPS站的多年速度解决方案所隐含的应变率图。对于36个均质地震带中的每一个,我们使用基于地震活动目录的适当的Gutenberg-Richter关系来估计地震应变率,这是与同震位移相关的机械功相关的应变率。我们显示出,对于每个地震带,存储与长期变形相关的大部分弹性能的体积,以及因此引起的地震应变率与静应力下降成反比。由GPS导出的每个地震带的应变率限制了相应的地震应变率,并估算了平均应力降的上限。我们表明,在地震震级范围[4.5-7.3]中,目录地震的隐含区域静应力下降范围从0.1到5.7 MPa。应力降的结果与区域a和b参数以及热流无关,但对假定的地震省最大震级非常敏感。数据并未排除以下假设:应力下降与每个地震带中记录的最大地震发生后的时间呈正相关。

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