Skip to main content
Log in

Morphobathymetric analysis and evidence of submarine mass movements in the western Gulf of Taranto (Calabria margin, Ionian Sea)

  • Original Paper
  • Published:
International Journal of Earth Sciences Aims and scope Submit manuscript

Abstract

The western part of the Gulf of Taranto, southern Italy, is a seismically active area with high sediment supply. New swath bathymetry and sub-bottom profiler (CHIRP) data were acquired on board R/V OGS-Explora during the WGDT cruise. The data were analyzed to describe the seafloor morphology and the acoustic facies of relevant morphologic features. Special attention was given to the features produced by mass wasting and soft-sediment deformations. The features identified include: slides and slide scars, debris flow deposits, enigmatic dip-slope trending sub-parallel linear depressions, and along-slope undulations inferred to have been produced either by creeping or sediment deposition by hyperpycnal flows. The description of these features contributes to the characterization of the Calabria foreland basin system and provides an analogue for other basins similarly affected by a close relation between sediment supply and active tectonics.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1
Fig. 2
Fig. 3
Fig. 4
Fig. 5
Fig. 6
Fig. 7
Fig. 8
Fig. 9
Fig. 10

Similar content being viewed by others

References

  • Alonso B, Canals M, Palanques A, Rehault JP (1995) A deep-sea channel in the northwestern Mediterranean Sea: morphology and seismic structure of the Valencia Channel and its surroundings. Mar Geoph Res 17:469–484

    Article  Google Scholar 

  • Bates RL, Jackson JA (1987) Glossary of geology, 3rd edn. American Geological Institute, Alexandria, Virginia, p 788

    Google Scholar 

  • Boccaletti M, Nicolich R, Tortorici L (1984) The Calabrian Arc and the Ionian Sea in the dynamic evolution of the Central Mediterranean. Mar Geol 55:219–245

    Article  Google Scholar 

  • Bornhold BD, Prior DB (1990) Morphology and sedimentary processes on the subaqueous Noeick River delta, British Columbia, Canada. In: Colella A, Prior DB (eds) Coarse-grained deltas. Spec Publ Int Assoc Sedimentol 10, pp 169–184

  • Bousquet JC (1973) La tectonique recente de l’apennin calabro lucanien dans son cadre geologique et geophysique. Geol Rom 12:1–104

    Google Scholar 

  • Brogan GE, Cluff LS, Taylor CL (1975) Seismicity and uplift of southern Italy. Tectonophysics 29:323–330

    Article  Google Scholar 

  • Canals M, Lastras G, Urgeles R, Casamor JL, Mienert J, Cattaneo A, De Batist M, Haflidason H, Imbo Y, Laberg JS, Locat J, Long D, Longva O, Masson DG, Sultan N, Trincardi F, Bryn P (2004) Slope failure dynamics and impacts from seafloor and shallow sub-seafloor geophysical data: case studies from the COSTA project. Mar Geol 213:9–72

    Article  Google Scholar 

  • Caputo M, Panza GF, Postpischl D (1972) New evidences about the deep structure of the Lipari Arc. Tectonophysics 15:219–231

    Article  Google Scholar 

  • Cartwright JA, Dewhurst DN (1998) Layer-bound compaction faults in fine grained sediments. Geol Soc Am Bull 110:1242–1257

    Article  Google Scholar 

  • Cattaneo A, Correggiari A, Marsset T, Thomas Y, Marsset B Trincardi F (2004) Seafloor undulation pattern on the Adriatic shelf and comparison to deep-water sediment waves. Mar Geol 213:121–148

    Google Scholar 

  • Cello G, Guerra I, Tortorici L, Turco E, Scarpa R (1982) Geometry of the neotectonic stress field in southern Italy: geological and seismological evidence. J Struct Geol 4:385–393

    Article  Google Scholar 

  • Christie-Blick N, Biddle KT (1985) Deformation and basin formation along strike-slip faults. In: Biddle KT, Christie-Blick N (eds) Strike-slip deformation, basin formation, and sedimentation, SEPM Special Publication 37: pp 1–34

  • Colella A, Normark WR (1984) High-resolution side-scanning sonar survey of delta slope and inner fan channels of Crati submarine fan (Ionian Sea). Mem Soc Geol It 27:381–390

    Google Scholar 

  • Correggiari A, Trincardi F, Langone L, Roveri M (2001) Styles of failure in late Holocene highstand prodelta wedges on the Adriatic shelf. J Sediment Res 71:218–236

    Article  Google Scholar 

  • Critelli S (1999) The interplay of lithospheric flexure and thrust accommodation in forming stratigraphic sequences of the southern Apennines foreland basin system. Accademia Nazionale dei Lincei, Rendiconti di Scienze Fisiche 10:257–326

    Article  Google Scholar 

  • Critelli S, Le Pera E (1998) Post-oligocene sediment dispersal systems and unroofing history of the Calabrian microplate, Italy. Int Geol Rev 40:609–637

    Article  Google Scholar 

  • Damuth JE (1980) Use of high-frequency (3.5–12 kHz) echograms in the study of near-bottom sedimentation processes in the deep-sea: a review. Mar Geol 38:51–75

    Article  Google Scholar 

  • DeCelles PG, Giles KA (1996) Foreland basin systems. Basin Res 8:105–123

    Article  Google Scholar 

  • Del Ben A (1993) Calabrian Arc tectonics from seismic exploration. Boll Geof Teor ed Appl 35:339–347

    Google Scholar 

  • Doglioni C, Merlini S, Cantarella G (1999) Foredeep geometries at the front of the Apennines in the Ionian Sea (central Mediterranean). Earth Planet Sci Lett 168:243–254

    Article  Google Scholar 

  • Faugères JC, Gonthier E, Mulder T, Kenyon N, Cirac P, Griboulard R, Berne S, Lesuavé R (2002) Multi-process generated sediment waves on the Landes Plateau (Bay of Biscay, North Atlantic). Mar Geol 182:279–302

    Article  Google Scholar 

  • Fernández-Salas LM, Lobo FJ, Sanz JL, Díaz-del-Río V, García MC, Moreno I (2007) Morphometric analysis and genetic implications of pro-deltaic sea-floor undulations in the northern Alboran Sea margin, western Mediterranean Basin. Mar Geol 243:31–56

    Article  Google Scholar 

  • Ferranti L, Santoro E, Mazzella ME, Monaco C, Morelli D (2008) Active transpression in the northern Calabria Apennines, southern Italy. Tectonophysics. doi: 10.1016/j.tecto.2008.11.010

  • Finetti I (1976) Mediterranean ridge: a young submerged chain associated with the Hellenic Arc. Boll Geof Teor Appl 13(69):1–31

    Google Scholar 

  • Gasparini C, Iannacone G, Scandone P, Scarpa R (1982) Seismotectonics of the Calabrian Arc. Tectonophysics 82:267–286

    Article  Google Scholar 

  • Gasperini L, Stanghellini G (2005) SEISPRO, a processing software for high resolution seismic data. ISMAR Technical Report 69

  • Hanquiez V, Mulder T, Lecroart P, Gonthier E, Marchès E, Voisset M (2007) High resolution seafloor images in the Gulf of Cadiz, Iberian margin. Mar Geol 246:42–59

    Article  Google Scholar 

  • Hill PR, Moran KM, Blasco SM (1982) Creep deformation of slope sediments in the Canadian Beaufort Sea. Geo Mar Lett 2:163–170

    Article  Google Scholar 

  • Khan SM, Imran J, Bradford S, Syvitski J (2005) Numerical modeling of hyperpycnal plume. Mar Geol 222–223:193–211

    Article  Google Scholar 

  • Lastras G, Canals M, Urgeles R, Amblas D, Ivanov M, Droz L, Dennielou B, Fabres J, Schoolmeester T, Akhmetzhanov A, Orange D, Garcia-Garcia A (2007) A walk down the Cap de Creus canyon, Northwestern Mediterranean Sea: Recent processes inferred from morphology and sediment bedforms. Mar Geol 246:176–192

    Article  Google Scholar 

  • Lykousis V, Sakellariou D, Rousakis G (2003) Prodelta slope stability and associated coastal hazards in tectonically active margins: Gulf of Corinth (NE Mediterranean). In: Locat J, Meinert J (eds) Submarine mass movements and their consequences, pp 433–440

  • Marsset T, Marsset B, Thomas Y, Cattaneo A, Thereau E, Trincardi F, Cochonat P (2004) Analysis of Holocene sedimentary features on the Adriatic shelf from 3D very high resolution seismic data (Triad survey). Mar Geol 213:73–89

    Article  Google Scholar 

  • Mulder T, Cochonat P (1996) Classification of offshore mass movements. J Sediment Res 66:43–57

    Google Scholar 

  • Mulder T, Syvitski JPM (1995) Turbidity currents generated at river mouths during exceptional discharges to the world oceans. J Geol 103:285–299

    Article  Google Scholar 

  • Normark WR, Hess GR, Sow DAV, Bowen AJ (1980) Sediment waves on the Monterey Fan levee: a preliminary physical interpretation. Mar Geol 37:1–18

    Article  Google Scholar 

  • Normark WR, Piper DJW, Posamentier H, Pirmez C, Migeon S (2002) Variability in form and growth of sediment waves on turbidite channel levees. Mar Geol 192:23–58

    Article  Google Scholar 

  • Pennetta M (1992) Morfologia e sedimentazione della piattaforma continentale e scarpata nel tratto di costa compreso tra Punta Alice e Capo Rizzuto (Golfo di Taranto). Bol Soc Geol Ital 111:149–161

    Google Scholar 

  • Pescatore T, Senatore MR (1986) A comparison between a present-day (Gulf of Taranto) and a Miocene (Irpinian Basin) foredeep of the Southern Apennines (Italy). IAS Spec Pub 8:169–182

    Google Scholar 

  • Ricci Lucchi F, Colella A, Gabbianelli G, Rossi S, Normark WR (1984) The Crati Submarine Fan, Ionian Sea. Geo-Mar Lett 3:71–77

    Article  Google Scholar 

  • Riuscetti M, Schick R (1975) Earthquakes and tectonics in Southern Italy. Boll Geophys Teor Appl 27:59–77

    Google Scholar 

  • Romagnoli C, Gabbianelli G (1990) Late quaternary sedimentation and soft-sediment deformation features in the Corigliano Basin, North Ionian Sea (Mediterranean). Giorn Geol 52(1–2):33–53

    Google Scholar 

  • Rossi S, Gabbianelli G (1978) Geomorfologia del Golfo di Taranto. Boll Soc Geol It 97:423–437

    Google Scholar 

  • Rossi S, Sartori R (1981) A seismic reflection study of the external Calabrian Arc in the N Ionian Sea (eastern Mediterranean). Mar Geoph Res 4:403–426

    Article  Google Scholar 

  • Rossi S, Auroux C, Mascle J (1983) The Gulf of Taranto (Southern Italy): seismic stratigraphy and shallow structure. Mar Geol 51:327–346

    Article  Google Scholar 

  • Senatore MR (1987) Caratteri sedimentari e tettonici di un bacino di avanfossa. Il golfo di Taranto. Mem Soc Geol It 38:177–204

    Google Scholar 

  • Senatore MR, Normark WR, Pescatore T, Rossi S (1988) Structural framework of the Gulf of Taranto (Ionian Sea). Mem Soc Geol It 41:533–539

    Google Scholar 

  • Sylvester AG (1988) Strike-slip faults. Geol Soc Am Bull 100:1666–1703

    Article  Google Scholar 

  • Urgeles R, DeMol B, Liquete C, Canals M, De Batist M, Hughes-Clarke JE, Amblàs D, Arnau PA, Calafat AM, Casamor JL, Centella V, De Rycker K, Fabrés J, Frigola J, Lafuerza S, Lastras G, Sànchez A, Zuñiga D, Versteeg W, Willmott V (2007) Sediments undulations on the Llobregat prodelta: Signs of early slope instability or sedimentary bedforms? J Geophys Res 112:B05102. doi:10.1029/2005JB003929

    Article  Google Scholar 

  • Van Dijk JP, Bello M, Brancaleoni GP, Cantarella G, Costa V, Frixa A, Golfetto F, Merlini S, Riva M, Torricelli S, Toscano C, Zerilli A (2000) A regional structural model for the northern sector of the Calabrian Arc (southern Italy). Tectonophysics 324:267–320

    Article  Google Scholar 

  • van Weering TCE, Weaver PPE (ed) (2007) EUROSTRATAFORM: role and functioning of Canyons. Mar Geol 246(2–4):247pp

    Google Scholar 

  • Verdicchio G, Trincardi F (2006) Short-distance variability in slope bed-forms along the southwestern Adriatic margin (central Mediterranean). Mar Geol 234:271–292

    Article  Google Scholar 

  • Wynn RB, Stow AV (2002) Classification and characterisation of deep-water sediment waves. Mar Geol 192:7–22

    Article  Google Scholar 

  • Yoo DG, Lee CW, Kim SP, Jin JH, Kim JK, Han HC (2002) Late quaternary transgressive and highstand systems tracts in the northern East China Sea mid-shelf. Mar Geol 187:313–328

    Article  Google Scholar 

Download references

Acknowledgments

The dataset on which this paper is built was acquired during the WGDT cruise (P.I. Salvatore Critelli, University of Calabria) on board OGS-Explora, supported with OGS institutional funds. Data processing has been performed within GEMAR and PROS groups from OGS. The authors acknowledge the support given by the shipboard party of R/V OGS Explora. We thank the referees Antonio Cattaneo, Galderic Lastras and Ruth Duran and guest editor Miquel Canals for their thoroughly review and helpful suggestions. NRC would like to thank the EC-FPV Research and Training Network EURODOM (European Deep Ocean Margins) for partially funding this research study and Danilo Morelli for constructive comments.

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to R. C. Neagu.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Rebesco, M., Neagu, R.C., Cuppari, A. et al. Morphobathymetric analysis and evidence of submarine mass movements in the western Gulf of Taranto (Calabria margin, Ionian Sea). Int J Earth Sci (Geol Rundsch) 98, 791–805 (2009). https://doi.org/10.1007/s00531-009-0429-1

Download citation

  • Received:

  • Accepted:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.1007/s00531-009-0429-1

Keywords

Navigation