Paola Mussoni

ORCID: 0000-0002-9413-555X
Publications
Citations
Views
---
Saved
---
About
Contact & Profiles
Research Areas
  • earthquake and tectonic studies
  • Geological and Geophysical Studies Worldwide
  • Geological and Geochemical Analysis
  • Marine and environmental studies
  • Geological formations and processes
  • Seismology and Earthquake Studies
  • Maritime and Coastal Archaeology
  • Geological Formations and Processes Exploration
  • Geology and Paleoclimatology Research
  • Hydrocarbon exploration and reservoir analysis
  • Seismic Imaging and Inversion Techniques
  • Geochemistry and Geologic Mapping
  • Ancient Mediterranean Archaeology and History

Eni (Italy)
2018-2021

University of Parma
2004-2018

University of Bologna
2004

We analyzed the structure and evolution of external Calabrian Arc (CA) subduction complex through an integrated geophysical approach involving multichannel single‐channel seismic data at different scales. Pre‐stack depth migrated crustal‐scale profiles have been used to reconstruct overall geometry complex, i.e., basal detachment, structural style tectonic domains, location major faults. High‐resolution (MCS) sub‐bottom CHIRP acquired in key areas during a recent cruise, as well multibeam...

10.1029/2010tc002821 article EN Tectonics 2011-08-19

Abstract. The Calabrian Arc (CA) subduction complex is located at the toe of Eurasian Plate in Ionian Sea, where sediments resting on lower plate have been scraped off and piled up accretionary wedge due to African/Eurasian convergence back arc extension. CA has struck repeatedly by destructive historical earthquakes, but knowledge active faults source parameters relatively poor, particularly for seismogenic structures extending offshore. We analysed fine structure major tectonic features...

10.5194/nhess-12-2311-2012 article EN cc-by Natural hazards and earth system sciences 2012-07-24

The Calabrian Arc is a narrow subduction-rollback system resulting from Africa/Eurasia plate convergence. We analysed the structural style of frontal accretionary wedge through multi-scale geophysical approach. Pre-stack depth-migrated crustal-scale seismic profiles unravelled overall geometry subduction complex; high-resolution multi-channel and sub-bottom CHIRP profiles, together with morpho-structural maps, integrated deep data constrained fine structure wedge, as well deformation...

10.3301/ijg.2016.11 article EN Italian Journal of Geosciences 2016-10-10

Aim of this study is the geophysical characterization a brown field using newly acquired PSDM seismic dataset. The composed by two Lower Miocene turbidite channel systems in deep water setting. work based on integration different disciplines with goal delineating new structural framework and facies distribution to update reservoir model. A detailed stratigraphic interpretation allowed identify main depositional elements defining reference sedimentological At same time, simultaneous elastic...

10.1190/segam2020-3425443.1 article EN 2020-09-30
Coming Soon ...