The 3D Crustal Structure in the Epicentral Region of the 1980, Mw 6.9, Southern Apennines Earthquake (Southern Italy): New Constraints From the Integration of Seismic Exploration Data, Deep Wells, and Local Earthquake Tomography

被引:0
|
作者
Feriozzi, F. [1 ]
Improta, L. [2 ]
Maesano, F. E. [3 ]
De Gori, P. [2 ]
Basili, R. [3 ]
机构
[1] Univ Roma Tre, Dipartimento Sci, Rome, Italy
[2] Ist Nazl Geofis & Vulcanol, Osservatorio Nazl Terremoti, Rome, Italy
[3] Ist Nazl Geofis & Vulcanol, Sez Sismol & Tettonofis, Rome, Italy
关键词
southern Apennines; 1980 Irpinia earthquake; seismic reflection profiles; subsurface geological model; local earthquake tomography; seismicity; IRPINIA FAULT; NOVEMBER; 23; MODEL; INVERSION; VELOCITY; COMPLEX; BASIN; BELT; ARCHITECTURE; SUBDUCTION;
D O I
10.1029/2023TC008056
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
We present the first 3D crustal model of the epicentral region of the 1980, M-w 6.9, normal-faulting Irpinia earthquake (southern Italy) determined by jointly interpreting the CROP-04 deep seismic profile, a grid of commercial seismic lines, deep exploration wells, and a high-resolution Local Earthquake Tomography. Despite numerous seismotectonic surveys and source studies of the background seismicity recorded by dense networks, a complete 3D geological model of the mid-upper crust was still lacking in the region. The architecture of the Neogene fold-and-thrust belt is also debated, with competing thin- and thick-skinned tectonic interpretations. We use the 3D geological model derived from subsurface exploration data to interpret the upper crustal tomographic velocities in terms of rock physical properties, while V(p )and V-p/V-s anomalies provide inferences on the deep structural setting down to 12 km depth. We find that a thick-skinned deformation style allows explaining the geometry of Pliocene fold-and-thrust systems deforming the Apulian carbonates but also deeper Permo-Triassic metasediments and the Paleozoic crystalline femic basement. Inherited compressional structures and lithological heterogeneities control background seismicity occurring at two crustal levels. Fluid-driven shallow seismicity (<4-6 km) concentrates in a high-V-p/V-s wedge of fractured, brine-saturated Mesozoic stiff rocks delimited by the 1980 earthquake faults. Deep seismicity (9-14 km) clusters instead within the low-V-p/V-s crystalline basement underneath the Apulian carbonate ramp-anticlines. Commercial seismic data allow us to identify the Irpinia Fault, the main fault ruptured by the 1980 earthquake, reinforcing its previous interpretations as an immature structure with subtle geological and geophysical evidence.
引用
收藏
页数:34
相关论文
共 16 条
  • [1] Fault Pattern and Seismotectonic Style of the Campania - Lucania 1980 Earthquake (Mw 6.9, Southern Italy): New Multidisciplinary Constraints
    Bello, S.
    de Nardis, R.
    Scarpa, R.
    Brozzetti, F.
    Cirillo, D.
    Ferrarini, F.
    di Lieto, B.
    Arrowsmith, R. J.
    Lavecchia, G.
    [J]. FRONTIERS IN EARTH SCIENCE, 2021, 8
  • [2] Detailed crustal structure in the area of the southern Apennines-Calabrian Arc border from local earthquake tomography
    Totaro, C.
    Koulakov, I.
    Orecchio, B.
    Presti, D.
    [J]. JOURNAL OF GEODYNAMICS, 2014, 82 : 87 - 97
  • [3] 3D crustal structure of the northwest Alborz region (Iran) from local earthquake tomography
    Rezaeifar, M.
    Kissling, E.
    Shomali, Z. H.
    Shahpasand-Zadeh, M.
    [J]. SWISS JOURNAL OF GEOSCIENCES, 2016, 109 (03) : 389 - 400
  • [4] 3D crustal structure of the northwest Alborz region (Iran) from local earthquake tomography
    M. Rezaeifar
    E. Kissling
    Z. H. Shomali
    M. Shahpasand-Zadeh
    [J]. Swiss Journal of Geosciences, 2016, 109 : 389 - 400
  • [5] New insights into crustal structure, Cenozoic magmatism, CO2 degassing, and seismogenesis in the southern Apennines and Irpinia region from local earthquake tomography
    Improta, Luigi
    De Gori, Pasquale
    Chiarabba, Claudio
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2014, 119 (11) : 8283 - 8311
  • [6] 3-D velocity structure in southern Haiti from local earthquake tomography
    Douilly, Roby
    Ellsworth, William L.
    Kissling, Edi
    Freed, Andrew M.
    Deschamps, Anne
    de Lepinay, Bernard Mercier
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2016, 121 (12) : 8813 - 8832
  • [7] Crustal seismic velocity structure in the epicentral region of the Latur earthquake (September 29, 1993), southern India: inferences from modelling of the aftershock seismograms
    Krishna, VG
    Rao, CVRK
    Gupta, HK
    Sarkar, D
    Baumbach, M
    [J]. TECTONOPHYSICS, 1999, 304 (03) : 241 - 255
  • [8] 3D crustal structure from local earthquake tomography around the Gulf of Arta (Ionian region, NW Greece)
    Haslinger, F
    Kissling, E
    Ansorge, J
    Hatzfeld, D
    Papadimitriou, E
    Karakostas, V
    Makropoulos, K
    Kahle, HG
    Peter, Y
    [J]. TECTONOPHYSICS, 1999, 304 (03) : 201 - 218
  • [9] 3d seismic velocity structure imaging beneath Flores region using local earthquake tomography
    Maneno, R.
    Santosa, B. J.
    [J]. INTERNATIONAL CONFERENCE ON MATHEMATICS AND NATURAL SCIENCES (ICMNS), 2019, 1245
  • [10] Three-dimensional crustal structure in the Southern Alps region of New Zealand from inversion of local earthquake and active source data
    Eberhart-Phillips, D
    Bannister, S
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2002, 107 (B10)