Export 41 results:
Author Title [ Type
Filters: First Letter Of Last Name is U [Clear All Filters]
Distinguishing sediment bedforms from sediment deformation in prodeltas of the Mediterranean Sea.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :233–244.
.
2012. Distinguishing sediment bedforms from sediment deformation in prodeltas of the Mediterranean Sea.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :233–244.
.
2012. IGCP 511: Submarine Mass Movements and Their Consequences (2005-2009). Tales Set in Stone – 40 Years of the International Geoscience Programme (IGCP). :62–66.
.
2012. One million years of climatic generated landslide events on the northwestern Barents Sea continental margin.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :747–756.
.
2012. One million years of climatic generated landslide events on the northwestern Barents Sea continental margin.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :747–756.
.
2012. An overview of the role of long-term tectonics and incoming plate structure on segmentation of submarine mass wasting phenomena along the Middle America Trench.. Submarine Mass Movements and Their Consequences - 5th International Symposium. :391–402.
.
2012. Recent submarine landslides on the continental slope of Storfjorden and Kveithola Trough-Mouth Fans (north west Barents Sea). Submarine Mass Movements and Their Consequences, Advances in Natural and Technological Hazards Research, 34, Springer, Dordrecht (The Netherlands). :735–745.
.
2012. Recent submarine landslides on the continental slope of Storfjorden and Kveithola Trough-Mouth Fans (north west Barents Sea). Submarine Mass Movements and Their Consequences, Advances in Natural and Technological Hazards Research, 34, Springer, Dordrecht (The Netherlands). :735–745.
.
2012. Submarine Mass Movements Along a Sediment Starved Margin: The Menorca Channel (Balearic Islands – Western Mediterranean). Submarine Mass Movements and Their Consequences. :329–338.
.
2014. Submarine Mass Movements and Their Consequences. Submarine Mass Movements and Their Consequences. 37:85–94.
.
2014. Submarine mass movements and their consequences. Submarine Mass Movements and Their Consequences, Advances in Natural and Technological Hazards Research. :1–8.
.
2010. Submarine Mass Movements and Their Consequences: An introduction.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :1–12.
.
2012. Submarine Mass Movements and Their Consequences: An introduction.. Submarine Mass Movement and Their Consequences, Advances in Natural and Technological Hazards Research. :1–12.
.
2012. A database on submarine landslides of the mediterranean sea. Submarine Mass Movements and Their Consequences - 4th International Symposium. :503–513.
.
2010. History of pore pressure build up and slope instability in mud-dominated sediments of Ursa Basin, Gulf of Mexico continental slope. Submarine Mass Movements and Their Consequences - 4th International Symposium. :179–190.
.
2010. Mass wasting at the easternmost Cyprus Arc, Off Syria, Eastern Mediterranean. Submarine Mass Movements and Their Consequences - 4th International Symposium. :323–334.
.
2010. .
2007. Sediment undulations on the Llobregat prodelta: Signs of early slope instability or sedimentary bedforms? Rendiconti Online Societa Geologica Italiana. 7:103–106.
.
2009. Compression and shear-wave velocities in discrete particle simulations of quartz granular packings: Improved Hertz-Mindlin contact model. GEOPHYSICS. 76:E165–E174.
.
2011. Drilling Glacial Deposits in Offshore Polar Regions. Eos, Transactions American Geophysical Union. 95:277–278.
.
2014. Geotechnical Properties of River-fed Sediments Compared with Glacier-fed Sediments. Marine Georesources & Geotechnology. 27:281–295.
.
2009. Historical and pre-historical tsunamis in the Mediterranean and its connected seas: Geological signatures, generation mechanisms and coastal impacts. Marine Geology. 354:81–109.
.
2014. Large-scale margin collapse during Messinian early sea-level drawdown: The SW Valencia Trough, NW Mediterranean. Basin Research.
.
Submitted. Late Miocene sedimentary architecture of the Ebro Continental Margin (Western Mediterranean): implications to the Messinian Salinity Crisis. International Journal of Earth Sciences. 103:423–440.
.
2014.