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Average strain rate in the Italian crust inferred from a permanent GPS network - II. Strain rate versus seismicity and structural geology

机译:从永久性Gps网络推断出意大利地壳的平均应变率 - II。应变率与地震活动和结构地质

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摘要

High-quality, weekly solutions for the coordinates of 45 permanent GPS stations spanning 1-6 years and covering the Alpine Mediterranean area are used to estimate a horizontal velocity field aligned with the ITRF2000 velocity datum. After subtracting model velocities for the Eurasian Plate, we show that the residual velocity field north of the Apennines, in the Adriatic/Dinaric region, describes a NNE-trending tectonic flow with a negative velocity gradient, from 6 mm yr(-1) NE of the Apennines to virtually zero NE of the Dinarids. In the Calabria region we observe a divergent pattern, with NNW orientation, which turns to west as one moves north, towards Tuscany. Very small residual velocities are observed for stations in the Sardinia Corsica block, Spain, Southern France and north of the Alps. This regional pattern of velocities defines areas of intraplate strain. On the basis of good station coverage and of a strain rate value above a threshold, we define five provinces: Calabria, Central Apennines, both in the extensional regime, and North Adriatic, Eastern Alps and South Adriatic, under compression. We show that the orientations of the principal strain rate axes agree with the stress pattern that is inferred from local seismicity. A comparison of the geodetically determined strain rate with the strain rate associated with the seismic moment of earthquakes in the past 30 yr shows that each province may differ considerably from the others in the amount of seismic moment that is accommodated by surface strain. For example, the Umbria seismic sequence of 1997 seems to have released a seismic moment that was not exceptionally large, but concentrated over a short time interval, so that the equivalent coseismic strain rate was larger than the value observed geodetically. On average, depending on the assumptions on the seismogenic volume and time span, 70-100 per cent of the surface strain seems to be accommodated by the release of seismic moment in the upper Italian crust.
机译:使用高质量的每周解决方案,对覆盖1-6年且覆盖地中海地中海地区的45个永久GPS站点的坐标进行估算,以估算与ITRF2000速度基准对齐的水平速度场。减去欧亚板块的模型速度后,我们表明亚平宁山脉北部的残余速度场在亚得里亚海/迪纳里克地区,从6 mm yr(-1)NE描述了具有负速度梯度的NNE趋势构造流。的亚平宁山脉几乎为零;在卡拉布里亚地区,我们观察到了一种以NNW方向分布的发散模式,随着北移,向托斯卡纳方向转向西。在撒丁岛科西嘉岛,西班牙,法国南部和阿尔卑斯山以北的站点观测到的残留速度非常小。速度的这种区域模式定义了板内应变区域。基于良好的测站覆盖率和高于阈值的应变率值,我们定义了五个省:处于扩张状态的卡拉布里亚,中亚平宁山脉以及受压的北亚得里亚海,东阿尔卑斯山和南亚得里亚海。我们表明,主要应变率轴的方向与从局部地震活动推断出的应力模式一致。通过大地测量确定的应变率与过去30年中与地震地震矩相关的应变率的比较表明,每个省在地表应变所适应的地震矩量方面可能与其他省有很大不同。例如,1997年的翁布里亚地震序列似乎释放了一个异常大的地震矩,但集中在很短的时间间隔内,因此等效同震应变率大于大地测量值。平均而言,根据对地震发生的量和时间跨度的假设,意大利上部地壳的地震矩释放似乎可以容纳70-100%的表面应变。

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