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  • Crustal deformation (cf. Earthquake precursor: deformation or strain)
  • E62
  • Tectonics
  • Kluwer  (13)
  • American Geophysical Union  (8)
  • Kiel und Hamburg: ZBW - Deutsche Zentralbibliothek für Wirtschaftswissenschaften, Leibniz-Informationszentrum Wirtschaft
  • Wiley
Collection
Publisher
  • 1
    Publication Date: 2021-01-04
    Description: We present a neotectonic model of ongoing lithosphere deformation and a corresponding estimate of long-term shallow seismicity across the Africa-Eurasia plate boundary, including the eastern Atlantic, Mediterranean region, and continental Europe. GPS and stress data are absent or inadequate for the part of the study area covered by water. Thus, we opt for a dynamic model based on the stress-equilibrium equation; this approach allows us to estimate the long-term behavior of the lithosphere (given certain assumptions about its structure and physics) for both land and sea areas. We first update the existing plate model by adding five quasi-rigid plates (the Ionian Sea, Adria, Northern Greece, Central Greece, and Marmara) to constrain the deformation pattern of the study area. We use the most recent datasets to estimate the lithospheric structure. The models are evaluated in comparison with updated datasets of geodetic velocities and the most compressive horizontal principal stress azimuths. We find that the side and basal strengths drive the present-day motion of the Adria and Aegean Sea plates, whereas lithostatic pressure plays a key role in driving Anatolia. These findings provide new insights into the neotectonics of the greater Mediterranean region. Finally, the preferred model is used to estimate long-term shallow seismicity, which we retrospectively test against historical seismicity. As an alternative to reliance on incomplete geologic data or historical seismic catalogs, these neotectonic models help to forecast long-term seismicity, although requiring additional tuning before seismicity rates are used for seismic hazard purposes.
    Description: Published
    Description: 5311–5342
    Description: 1T. Geodinamica e interno della Terra
    Description: 2T. Tettonica attiva
    Description: 3T. Pericolosità sismica e contributo alla definizione del rischio
    Description: JCR Journal
    Description: open
    Keywords: Tectonics ; Earthquake rates ; 04. Solid Earth::04.02. Exploration geophysics::04.02.03. Heat flow ; 04. Solid Earth::04.03. Geodesy::04.03.01. Crustal deformations ; 04. Solid Earth::04.04. Geology::04.04.01. Earthquake geology and paleoseismology ; 04. Solid Earth::04.04. Geology::04.04.06. Rheology, friction, and structure of fault zones ; 04. Solid Earth::04.06. Seismology::04.06.01. Earthquake faults: properties and evolution ; 04. Solid Earth::04.06. Seismology::04.06.02. Earthquake interactions and probability ; 04. Solid Earth::04.07. Tectonophysics::04.07.01. Continents ; 04. Solid Earth::04.07. Tectonophysics::04.07.02. Geodynamics ; 04. Solid Earth::04.07. Tectonophysics::04.07.04. Plate boundaries, motion, and tectonics ; 04. Solid Earth::04.07. Tectonophysics::04.07.05. Stress ; 04. Solid Earth::04.07. Tectonophysics::04.07.07. Tectonics
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
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  • 2
    Publication Date: 2022-05-25
    Description: Author Posting. © American Geophysical Union, 2004. This article is posted here by permission of American Geophysical Union for personal use, not for redistribution. The definitive version was published in Reviews of Geophysics 42 (2004): RG2001, doi:10.1029/2003RG000127.
    Description: Documenting the mass flux through convergent plate margins is important to the understanding of petrogenesis in arc settings and to the origin of the continental crust, since subduction zones are the only major routes by which material extracted from the mantle can be returned to great depths within the Earth. Despite their significance, there has been a tendency to view subduction zones as areas of net crustal growth. Convergent plate margins are divided into those showing long-term landward retreat of the trench and those dominated by accretion of sediments from the subducting plate. Tectonic erosion is favored in regions where convergence rates exceed 6 ± 0.1 cm yr−1 and where the sedimentary cover is 〈1 km. Accretion preferentially occurs in regions of slow convergence (〈7.6 cm yr−1) and/or trench sediment thicknesses 〉1 km. Large volumes of continental crust are subducted at both erosive and accretionary margins. Average magmatic productivity of arcs must exceed 90 km3 m.y.−1 if the volume of the continental crust is to be maintained. Convergence rate rather than height of the melting column under the arc appears to be the primary control on long-term melt production. Oceanic arcs will not be stable if crustal thicknesses exceed 36 km or trench retreat rates are 〉6 km m.y.−1. Continental arcs undergoing erosion are major sinks of continental crust. This loss requires that oceanic arcs be accreted to the continental margins if the net volume of crust is to be maintained.
    Description: This material is partly based upon work supported by the National Science Foundation (Ocean Sciences) under grant 9907137.
    Keywords: Tectonics ; Subduction ; Magmatism
    Repository Name: Woods Hole Open Access Server
    Type: Article
    Format: application/pdf
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  • 3
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    Kluwer
    In:  Dordrecht, 344 pp., Kluwer, vol. 20, no. Publ. No. 12, pp. 81-89, (ISBN 1-4020-1267-5 (hb), ISBN 1-4020-1268-3 (pb))
    Publication Date: 2004
    Keywords: Textbook of geophysics ; NOModelling ; GeodesyY ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; post-glacial ; Rheology ; Earth rotation ; Inelastic ; Seismology ; earth mantle ; post-seismic ; Dislocation
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  • 4
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    Kluwer
    In:  Dordrecht, 460 pp., Kluwer, vol. 17, pp. 225, (ISBN 1-4020-1408-2)
    Publication Date: 2003
    Description: Foreword. How to climb the gravity wall; R. Rummel. I: Precise orbit determination and gravity field modelling. Strategies for precise orbit determination of low earth orbiters using the Global Positioning System; U. Hugentobler, G. Beutler. Aiming at a 1 cm orbit for low earth orbiters: reduced-dynamic and kinematic precise orbit determination; P. N. A. M. Visser, J. van den Ijssel. Space-wise, time-wise, torus and Rosborough representations in gravity field modelling; N. Sneeuw. Gravity field recovery from GRACE: unique aspects of the high precision inter-satellite data and analysis methods; G. Balmino. Global gravity field recovery using solely Global Positioning System tracking and accelerometer data from CHAMP; C. Reigber, et al. The processing of band-limited measurements: filtering techniques in the least squares context and in the presence of data gaps; W.-D. Schuh. II: Solid earth physics. Long wavelength sea level and solis surface perturbations driven by polar ice mass variations: fingerprinting Greenland and Antarctic ice sheet flux; M. E. Tamisiea, et al. Benefits from GOCE within solid earth geophysics; A. M. Marotta. The potential of GOCE in constraining the structure of the crust and lithosphere from post-glacial rebound; L. L. A. Vermeersen. Deep and shallow solid-earth structures reconstructed with sequential integrated inversion (SII) of seismic and gravity data; R. Tondi, et al. Present-day sea level change: observations and causes; A. Cazenave, et al. III: Ocean circulation. Global ocean data assimilation and geoid measurements; C. Wunsch, D. Stammer. Resolution needed for an adequate determination of the mean ocean circulation from altimetry and an improved geoid; C. Le Provost, M. Bremond. Error characteristics estimated from CHAMP, GRACE and GOCE derived geoids and from satellite altimetry derived mean dynamic topography; E. J. O. Schrama. Estimating the high-resolution mean sea-surface velocity field by combined use of altimeter and drifter data for geoid model improvement; S. Imawaki, et al. Combined use of altimetry and in situ gravity data for coastal dynamics studies; K. Haines, et al. Feasibility and contribution to ocean circulation studies of ocean bottom pressure determination; C. W. Hughes, V. Stepanov. Impact of geoid improvement on ocean mass and heat transport estimates; P. Le Grand. How operational oceanography can benefit from dynamic topography estimates as derived from altimetry and improved geoid; P. Y. Le Traon, et al. IV: Geodesy. Remarks on the role of height datum in altimetry-gravity boundary-value problems; F. Sacerdote, F. Sanso. Ocean tides in GRACE monthly averaged gravity fields; P. Knudsen. Tidal models in a new era of satellite gravimetry; R. D. Ray, et al. The elusive stationary geoid; M. Vermeer. Geodetic methods for calibration of GRACE and GOCE; J. Bouman, R. Koop. V: Sea level. Benefits of GRACE and GOCE to sea level studies; P. Woodworth, J. M. Gregory. What might GRACE contribute to studies of post glacial rebound? J. Wahr, I. Velicogna. Measuring the distribution of ocean mass using GRACE; R. S. Nerem, et al. Monitoring changes in continental water storage with GRACE; S. Swenson, J. Wahr. VI: Future concepts. Attitude and drag control: an application to the GOCE satellite; E. Canuto, et al. On superconductive gravity gradiometry in space; S. Zarembinski. Satellite-satellite laser links for future gravity missions; P. L. Bender et al. Possible future use of laser gravity gradiometers; P. L. Bender, et al. MICROSCOPE instrument development lessons for GOCE; P. Touboul. Needs and tools for future gravity measuring missions; M. Aguirre-Martinez, N. Sneeuw. VII: Closing session. GOCE: first earth explorer core mission; M. R. Drinkwater, et al. Earth gravity field from space from senors to earth sciences: closing remarks; G. Beutler.
    Keywords: Textbook of geodesy ; Earth tides ; Least-squares ; Data analysis / ~ processing ; Geodesy ; Rheology ; Inelastic ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Gravimetry, Gravitation ; Modelling
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  • 5
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    Kluwer
    In:  Professional Paper, Integration of Earth Science Research on the Turkish and Greek 1999 Earthquakes, Dordrecht, Kluwer, vol. 65, no. 16, pp. 61-70, (ISBN 1-86239-165-3, vi + 330 pp.)
    Publication Date: 2002
    Keywords: Sea seismics ; Fault zone ; NAF ; Deep seismic sounding (espec. cont. crust) ; Tectonics ; Cagatay ; Goeruer ; Gorur ; Turkey
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  • 6
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    Kluwer
    In:  Professional Paper, Integration of Earth Science Research on the Turkish and Greek 1999 Earthquakes, Dordrecht, Kluwer, vol. 24, no. 231, pp. 197-204, (ISBN: 3-540-23712-7)
    Publication Date: 2002
    Keywords: Modelling ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Digital elevation model ; InSAR ; optical ; aerial ; photographs ; remote ; sensing ; Goeruer ; Gorur ; Greece
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  • 7
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    Kluwer
    In:  Bull., Polar Proj. OP-O3A4, Integration of Earth Science Research on the Turkish and Greek 1999 Earthquakes, Dordrecht, Kluwer, vol. 20, no. 4, pp. 113-128, (ISBN 0080419208)
    Publication Date: 2002
    Keywords: Earthquake ; Tectonics ; Geol. aspects ; Site amplification ; rockfall ; landslide ; cracks and fractures (.NE. fracturing) ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Goeruer ; Gorur ; Greece
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  • 8
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    Kluwer
    In:  Dordrecht, Kluwer, vol. 10, no. Subvol. b, pp. 220, (ISBN 1-4020-0653-5)
    Publication Date: 2002
    Keywords: Textbook of geophysics ; Earthquake ; Seismology ; Tectonics ; Plate tectonics ; Strong motions ; Sea seismics ; Geol. aspects ; Tsunami(s) ; Earthquake catalog ; Seismicity ; Velocity depth profile ; Stress ; triggering ; Earthquake hazard ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Geodesy ; Turkey ; Greece ; Goeruer ; Gorur
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  • 9
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    Kluwer
    In:  Professional Paper, Integration of Earth Science Research on the Turkish and Greek 1999 Earthquakes, Dordrecht, Kluwer, vol. 23, no. Subvol. b, pp. 1-15, (ISBN: 3-540-23712-7)
    Publication Date: 2002
    Keywords: Crustal deformation (cf. Earthquake precursor: deformation or strain) ; surface ; rupture ; Source parameters ; Inversion ; seismic Moment ; release ; Seismology ; NAF ; Earthquake ; Oezaksoy ; Ozaksoy ; Goelcuek ; Golcuk ; Duezce ; Duzce ; Goekten ; Gokten ; Goeruer ; Gorur ; Adapazari ; Cemen ; Pinar
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  • 10
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    Kluwer
    In:  Integration of Earth Science Research on the Turkish and Greek 1999 Earthquakes, Dordrecht, Kluwer, vol. 65, pp. 35-46
    Publication Date: 2002
    Keywords: Geol. aspects ; Plate tectonics ; Tectonics ; Fault zone ; NAF ; Goeruer ; Gorur ; Turkey ; Yaltirak
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  • 11
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    Kluwer
    In:  Bull., Polar Proj. OP-O3A4, Integration of Earth Science Research on the Turkish and Greek 1999 Earthquakes, Dordrecht, Kluwer, vol. 46, no. XVI:, pp. 61-85, (ISBN: 3-540-23712-7)
    Publication Date: 2002
    Keywords: Geochemistry ; Tectonics ; Fault zone ; NAF ; Hydraulic fracturingSWEEP ; PARASOUND ; samples ; Kuscu ; Pekdeger ; Goeruer ; Gorur ; Turkey
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  • 12
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    Kluwer
    In:  Bull., Open-File Rept., Integration of Earth Science Research on the Turkish and Greek 1999 Earthquakes, Dordrecht, Kluwer, vol. 54, no. 1, pp. 153-173, (ISBN 0080419208)
    Publication Date: 2002
    Keywords: Earthquake hazard ; historical ; Seismicity ; Geol. aspects ; Tectonics ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Review article ; Goeruer ; Gorur
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  • 13
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    Kluwer
    In:  Professional Paper, Open-File Rept., Integration of Earth Science Research on the Turkish and Greek 1999 Earthquakes, Dordrecht, Kluwer, vol. 9, no. 16, pp. 47-59, (ISBN 0080419208)
    Publication Date: 2002
    Keywords: Sea seismics ; Fault zone ; NAF ; Deep seismic sounding (espec. cont. crust) ; Tectonics ; Ulug ; Goeruer ; Gorur ; Turkey ; Oezel ; Ozel
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  • 14
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    Kluwer
    In:  Earthquake Hazard and Seismic Risk Reduction, Dordrecht, Kluwer, vol. 37, no. 16, pp. 169-209, (ISBN 0080419208)
    Publication Date: 2000
    Keywords: Earthquake hazard ; Earthquake precursor: prediction research ; Project report/description ; Seismicity ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Geochemistry ; Geomagnetics ; Strong motions
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  • 15
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    American Geophysical Union
    In:  U.S. National Report to International Union of Geodesy and Geophysics 1991 - 1994. Contributions in Dynamics of the Solid Earth and Other Planets, ed. by, Washington, D.C., American Geophysical Union, vol. 10, no. 302, pp. 365-369
    Publication Date: 1995
    Keywords: Plate tectonics ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Seismicity ; Geodesy ; Review article
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  • 16
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    American Geophysical Union
    In:  Bull., Open-File Rept., U.S. National Report to International Union of Geodesy and Geophysics 1991 - 1994, Washington, D.C., American Geophysical Union, vol. 65, no. 1, pp. 23-40, (ISBN 0080419208)
    Publication Date: 1995
    Keywords: Review article ; Seismology ; Tectonics ; Plate tectonics ; Volcanology ; Earthquake hazard ; Earthquake precursor: prediction research ; Earth rotation ; Geochemistry ; Nuclear explosion ; Source ; Deep seismic sounding (espec. cont. crust) ; GeodesyY ; Chaotic behaviour ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Rock mechanics ; remote ; sensing ; Mineralogy ; Geodesy ; Global Positioning System ; Very Long Baseline Interferometry ; Satellite Laser Ranging ; Gravimetry, Gravitation ; Planetology
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  • 17
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    American Geophysical Union
    In:  U.S. National Report to International Union of Geodesy and Geophysics 1991 - 1994. Contributions in Dynamics of the Solid Earth and Other Planets, ed. by R. A. Pielke, Washington, D.C., American Geophysical Union, vol. 10, no. SC.TECH./SEM.16/R.60, pp. 379-383
    Publication Date: 1995
    Keywords: Tectonics ; rifting ; basins ; Fault zone ; Stress ; Fluids ; Review article
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  • 18
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    American Geophysical Union
    In:  U.S. National Report to International Union of Geodesy and Geophysics 1991 - 1994. Contributions in Dynamics of the Solid Earth and Other Planets, ed. by R. A. Pielke, Washington, D.C., American Geophysical Union, vol. C 560, 183 pp., no. M79-E-11 [79127 Arto 129], pp. 249-255, (ISBN 3-933346-037)
    Publication Date: 1995
    Keywords: Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Earthquake hazard ; Review article
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  • 19
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    American Geophysical Union
    In:  U.S. National Report to International Union of Geodesy and Geophysics 1991 - 1994. Contributions in Dynamics of the Solid Earth and Other Planets, ed. by R. A. Pielke, Washington, D.C., American Geophysical Union, vol. C 560, 183 pp., no. PL-TR-91-2097, pp. 371-377, (ISBN 3-933346-037)
    Publication Date: 1995
    Keywords: Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Geodesy ; Very Long Baseline Interferometry ; Satellite Laser Ranging ; Global Positioning System ; Plate tectonics ; Review article
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  • 20
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    American Geophysical Union
    In:  U.S. National Report to International Union of Geodesy and Geophysics 1991 - 1994. Contributions in Dynamics of the Solid Earth and Other Planets, ed. by R. A. Pielke, Washington, D.C., American Geophysical Union, vol. 1034, no. SAND 80-2048, pp. 283-286, (ISBN 3-933346-037)
    Publication Date: 1995
    Keywords: Source ; Seismology ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Energy (of earthquakes) ; Review article
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  • 21
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    Kluwer
    In:  Geologie en Mijnbouw, Veldhoven, Kluwer, vol. 73, no. 2-4, pp. 605-620, pp. L05608, (ISSN: 1340-4202)
    Publication Date: 1993
    Keywords: Seismicity ; western ; Europe ; Earthquake ; Tectonics ; Geol. aspects ; Crustal deformation (cf. Earthquake precursor: deformation or strain) ; Aftershocks ; Modelling ; Stress ; Fault plane solution, focal mechanism ; Source parameters ; Fore-shocks ; Surface waves ; Seismic networks ; Intensity ; Earthquake risk ; losses ; Strong motions ; Seismology ; Earthquake hazard ; liquefaction ; Engineering geophys. ; Radon ; Earthquake precursor: chemical (Rn, water(-level,...)
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  • 22
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    Wiley
    In:  New York, 571 pp., Wiley, vol. 5, no. XVI:, pp. 1-14, (ISBN 0-89871-521-0)
    Publication Date: 1976
    Keywords: Structural geology ; Textbook of geology ; Stress ; Geol. aspects ; Crustal deformation (cf. Earthquake precursor: deformation or strain)
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  • 23
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    Wiley
    In:  Professional Paper, The Application of Modern Physics to the Earth and Planetary Interiors, New York, Wiley, vol. 9, no. 16, pp. 223-246, (ISBN 1-4020-1729-4)
    Publication Date: 1967
    Keywords: Stress ; Tectonics ; Inelastic
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