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  • 1
    Publication Date: 2015-04-01
    Description: We built a 3D seismic model of the Po Plain and neighboring regions of northern Italy, covering altogether an area about 600 km by 300 km with an approximately 1 km spaced grid. We started by collecting an extensive and diverse set of geological and geophysical data, including seismic reflection and refraction profiles, borehole logs, and available geological information. Major geological boundaries and discontinuities have thus been identified and mapped into the model. We used kriging to interpolate the geographically sparse information into continuous surfaces delimiting geological bodies with laterally varying thickness. Seismic-wave properties have been assigned to each unit using a rule-based system and, V P , V S , and derived from other studies. Sedimentary strata, although with varying levels of compaction and hence material properties, may locally reach a thickness of 15 km and give rise to significant effects in seismic-wave propagation. We have used our new model to compute the seismic response for two recent earthquakes, to test its performance. Results show that the 3D model reproduces the large amplitude and the long duration of shaking seen in the observed waveforms recorded on sediments, whereas paths outside the basin may be well fit by more homogeneous (1D) hard rock structure. We conclude that the new model is suited for simulation of wave propagation, mostly for T 〉3 s, and may serve well as a constraint for earthquake location and further improvements via body- or surface-wave inversion.
    Print ISSN: 0037-1106
    Electronic ISSN: 1943-3573
    Topics: Geosciences , Physics
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  • 2
    Publication Date: 2016-05-22
    Description: We measure ellipticity of teleseismic Rayleigh waves at 95 seismic stations in Northern Italy, for wave period between 10 and 110 s, using an automatic technique and a large volume of high-quality seismic recordings from over 500 global earthquakes that occurred in 2008–2014. Northern Italy includes a wide range of crustal structures, from the wide and deep Po Plain sedimentary basin to outcropping sedimentary and crystalline rocks in the Northern Apennines and Alps. It thus provides an excellent case for studying the influence of shallow earth structure on polarization of surface waves. The ellipticity measurements show excellent spatial correlation with geological features in the region, such as high ellipticity associated with regions of low seismic velocity in the Po Plain and low ellipticity values in faster, hard rock regions in the Alps and Apennine mountains. Moreover, the observed ellipticity values also relate to the thickness of the basement, as highlighted by observed differences beneath the Alps and the Apennines. Comparison between observations and predicted ellipticity from a reference crustal model of the region show substantial fit, particularly for T ~ 38 s data. Discrepancy for shorter wave period suggests that slight modifications of the model are needed, and that the ellipticity measurements could help to better constrain the shallow crustal structure of the region. Predictions for the Po Plain are larger than the observations by a factor of four or more and transition from retrograde to prograde Rayleigh wave motion at the surface for periods of T ~ 10–13 s is predicted for seismic stations in the plain. Analysis of corresponding real data indicates a possible detection of teleseismic prograde particle motion, but the weak teleseismic earthquake signals are mixed with ambient noise signals at the predicted, short, transition periods. Detection of the period of polarity inversion from the joint analysis of earthquake and ambient noise ellipticity measurements may provide further, stringent, constraints on the structure of sedimentary basins.
    Keywords: Seismology
    Print ISSN: 0956-540X
    Electronic ISSN: 1365-246X
    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 3
    Publication Date: 2013-05-09
    Description: Secondary microseisms recorded by seismic stations are generated in the ocean by the interaction of ocean gravity waves. We present here the theory for modelling secondary microseismic noise by normal mode summation. We show that the noise sources can be modelled by vertical forces and how to derive them from a realistic ocean wave model. We then show how to compute bathymetry excitation effect in a realistic earth model by using normal modes and a comparison with Longuet–Higgins approach. The strongest excitation areas in the oceans depends on the bathymetry and period and are different for each seismic mode. Seismic noise is then modelled by normal mode summation considering varying bathymetry. We derive an attenuation model that enables to fit well the vertical component spectra whatever the station location. We show that the fundamental mode of Rayleigh waves is the dominant signal in seismic noise. There is a discrepancy between real and synthetic spectra on the horizontal components that enables to estimate the amount of Love waves for which a different source mechanism is needed. Finally, we investigate noise generated in all the oceans around Africa and show that most of noise recorded in Algeria (TAM station) is generated in the Northern Atlantic and that there is a seasonal variability of the contribution of each ocean and sea.
    Print ISSN: 0956-540X
    Electronic ISSN: 1365-246X
    Topics: Geosciences
    Published by Oxford University Press on behalf of The Deutsche Geophysikalische Gesellschaft (DGG) and the Royal Astronomical Society (RAS).
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  • 4
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    In:  Nature, Edmonton, Conseil de l'Europe, vol. 325, no. 44, pp. 678-683, pp. B10410, (ISSN: 1340-4202)
    Publication Date: 1987
    Keywords: Seismology ; earth Core ; earth mantle ; Inhomogeneity ; Tomography ; Dziewonski
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  • 5
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    In:  Geophys. J. Int., Edmonton, Conseil de l'Europe, vol. 325, no. 44, pp. 678-683, pp. B10410, (ISSN: 1340-4202)
    Publication Date: 1991
    Keywords: P-waves ; Shear waves ; Seismology ; Velocity analysis ; Travel time ; GJI ; Dziewonski
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  • 6
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    In:  Ann. Geophys., Edmonton, Conseil de l'Europe, vol. 5B, no. 44, pp. 281-288, pp. B10410, (ISSN: 1340-4202)
    Publication Date: 1987
    Keywords: Fracture ; Dislocation ; Earthquake precursor: deformation or strain
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  • 7
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    In:  Phys. Earth Plan. Int., Stockholm, Wissenschaftliche Buchgesellschaft, vol. 130, no. 1-2, pp. 71-101, pp. L15318, (ISSN: 1340-4202)
    Publication Date: 2002
    Keywords: Earthquake catalog ; Moment tensor ; Fault plane solution, focal mechanism ; PEPI ; Ekstroem ; Ekstrom ; Dziewonski
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  • 8
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    In:  Computers & Geosciences, Oslo, Wiley, vol. 21, no. 2, pp. 279-288, pp. 1604, (ISSN: 1340-4202)
    Publication Date: 1995
    Keywords: Data analysis / ~ processing ; Discrimination ; Detectors ; Seismology
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  • 9
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    Kluwer Acad. Publ.
    In:  Professional Paper, Recent Evolution and Seismicity of the Mediterranean Region, Dordrecht, Kluwer Acad. Publ., vol. 23, no. Subvol. b, pp. 213-238, (ISBN: 3-540-23712-7)
    Publication Date: 1993
    Keywords: Seismology ; Source parameters
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  • 10
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    Kluwer Acad. Publ.
    In:  Bull., Polar Proj. OP-O3A4, Recent Evolution and Seismicity of the Mediterranean Region, Dordrecht, Kluwer Acad. Publ., vol. 4, no. XVI:, pp. 53-64, (ISBN: 3-540-23712-7)
    Publication Date: 1993
    Keywords: Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Turkey
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