New insights into earthquake precursors from InSAR
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F. Novali | C. Bignami | E. Falcucci | S. Gori | M. Moro | M. Saroli | U. Wegmüller | S. Stramondo | C. Doglioni | M. Albano | M. Costantini | M. Polcari | F. Malvarosa | M. Tallini | L. Macerola
[1] F. Cifelli,et al. New insights into the onset and evolution of the central Apennine extensional intermontane basins based on the tectonically active L’Aquila Basin (central Italy) , 2017 .
[2] M. Nocentini,et al. Plio-Quaternary geology of L’Aquila – Scoppito Basin (Central Italy) , 2017 .
[3] C. Bignami,et al. Gravity-driven postseismic deformation following the Mw 6.3 2009 L’Aquila (Italy) earthquake , 2015, Scientific Reports.
[4] S. Barba,et al. Fault on-off versus coseismic fluids reaction , 2014 .
[5] L. Crescentini,et al. Correlation between groundwater flow and deformation in the fractured carbonate Gran Sasso aquifer (INFN underground laboratories, central Italy) , 2014 .
[6] Riccardo Lanari,et al. Anomalous far‐field geodetic signature related to the 2009 L'Aquila (central Italy) earthquake , 2013 .
[7] M. Mastalerz,et al. Evidence for strong middle Pleistocene earthquakes in the epicentral area of the 6 April 2009 L'Aquila seismic event from sediment paleofluidization and overconsolidation , 2013 .
[8] Felix Waldhauser,et al. Radiography of a normal fault system by 64,000 high‐precision earthquake locations: The 2009 L'Aquila (central Italy) case study , 2013 .
[9] F. Galadini,et al. Historical earthquakes and variable kinematic behaviour of the 2009 L'Aquila seismic event (central Italy) causative fault, revealed by paleoseismological investigations , 2013 .
[10] L. Crescentini,et al. Parsimonious recharge/discharge modeling in carbonate fractured aquifers: The groundwater flow in the Gran Sasso aquifer (Central Italy) , 2013 .
[11] M. Petitta,et al. Changes on groundwater flow and hydrochemistry of the Gran Sasso carbonate aquifer after 2009 L’Aquila earthquake , 2012 .
[12] Gianfranco Fornaro,et al. Space-time distribution of afterslip following the 2009 L'Aquila earthquake , 2012 .
[13] Giuseppe Modoni,et al. Cyclic stress–strain response of compacted gravel , 2011 .
[14] L. Crescentini,et al. Impact of the 6 April 2009 L'Aquila earthquake on groundwater flow in the Gran Sasso carbonate aquifer, Central Italy , 2011 .
[15] Claudio Prati,et al. A New Algorithm for Processing Interferometric Data-Stacks: SqueeSAR , 2011, IEEE Transactions on Geoscience and Remote Sensing.
[16] P. Galli,et al. The 2009 central Italy earthquake seen through 0.5 Myr-long tectonic history of the L’Aquila faults system , 2010 .
[17] Davide Piccinini,et al. Temporal variation of seismic velocity and anisotropy before the 2009 MW 6.3 L'Aquila earthquake, Italy , 2010 .
[18] Pierre Briole,et al. Surface displacement of the Mw 7 Machaze earthquake (Mozambique): Complementary use of multiband InSAR and radar amplitude image correlation with elastic modelling. , 2010 .
[19] G. Ventura,et al. Normal faults and thrusts reactivated by deep fluids: The 6 April 2009 Mw 6.3 L'Aquila earthquake, central Italy , 2010 .
[20] G. Lavecchia,et al. Coseismic ground deformation of the 6 April 2009 L'Aquila earthquake (central Italy, Mw6.3) , 2010 .
[21] P. Galli,et al. The Paganica Fault and Surface Coseismic Ruptures Caused by the 6 April 2009 Earthquake (L'Aquila, Central Italy) , 2009 .
[22] Alberto Michelini,et al. The 2009 L'Aquila (central Italy) MW6.3 earthquake: Main shock and aftershocks , 2009 .
[23] K. Hirahara,et al. An attempt to detect preseismic displacement field of the 2008 Iwate-Miyagi Nairiku Earthquake using InSAR small baseline time-series analysis , 2008 .
[24] Mario Costantini,et al. A New Method for Identification and Analysis of Persistent Scatterers in Series of SAR Images , 2008, IGARSS 2008 - 2008 IEEE International Geoscience and Remote Sensing Symposium.
[25] C. Werner,et al. Interferometric point target analysis for deformation mapping , 2003, IGARSS 2003. 2003 IEEE International Geoscience and Remote Sensing Symposium. Proceedings (IEEE Cat. No.03CH37477).
[26] D. Montgomery,et al. Streamflow response to the Nisqually earthquake , 2003 .
[27] M. Petitta,et al. Groundwater Resources and Human Impacts in a Quaternary Intramontane Basin (L'Aquila Plain, Central Italy) , 2003 .
[28] R. Muir-Wood,et al. Hydrological signatures of earthquake strain , 1993 .
[29] D.R.P. Hettiaratchi,et al. Theoretical soil mechanics and implement design , 1988 .
[30] A. Nur. Matsushiro, Japan, Earthquake Swarm: Confirmation of the Dilatancy-Fluid Diffusion Model , 1974 .
[31] C H Scholz,et al. Earthquake prediction: a physical basis. , 1973, Science.
[32] M. L. Sbar,et al. Premonitory Changes in Seismic Velocities and Prediction of Earthquakes , 1973, Nature.
[33] Amos Nur,et al. Dilatancy, pore fluids, and premonitory variations of ts/tp travel times , 1972, Bulletin of the Seismological Society of America.
[34] K. Terzaghi. Theoretical Soil Mechanics , 1943 .
[35] A. Holmes,et al. Physics of the Earth , 1940, Nature.
[36] M. Manga,et al. 4.12 – Earthquake Hydrology , 2015 .
[37] Giovanni Battista Barla,et al. Geotechnical Aspects of the L’Aquila Earthquake , 2012 .
[38] M. Petitta,et al. Idrodinamica sotterranea del massiccio del Gran Sasso (Abruzzo); muove indagini idrologiche, idrogeologiche e idrochimiche (1994-2001) , 2002 .
[39] P. Bono,et al. Schema Idrogeologico dell'Italia centrale: Carta Idrogeologica dell'Italia centrale (Scala 1:500.000), Carta Idrologica dell'Italia centrale (Scala 1:500.000), Carta dei Bilanci Idrogeologici e delle Risorse Idriche sotterranee (Scala 1:000.000) , 1986 .
[40] D. Tarling. The physical basis , 1983 .