HR: 1340h
AN: S53A-1019 [Abstracts]
TI: New contributions to the debate on the cause of the January 11th, 1693 tsunami in eastern Sicily (Italy): earthquake or offshore landslide source (or may be both)?
AU: * Armigliato, A
EM: alberto.armigliato@unibo.it
AF: University of Bologna, Department of Physics, Sector of Geophysics, Viale Carlo Berti
Pichat, 8, Bologna, 40127, Italy
AU: Tinti, S
EM: stefano.tinti@unibo.it
AF: University of Bologna, Department of Physics, Sector of Geophysics, Viale Carlo Berti
Pichat, 8, Bologna, 40127, Italy
AU: Zaniboni, F
EM: filippo.zaniboni@unibo.it
AF: University of Bologna, Department of Physics, Sector of Geophysics, Viale Carlo Berti
Pichat, 8, Bologna, 40127, Italy
AU: Pagnoni, G
EM: gianluca.pagnoni3@unibo.it
AF: University of Bologna, Department of Physics, Sector of Geophysics, Viale Carlo Berti
Pichat, 8, Bologna, 40127, Italy
AU: Argnani, A
EM: andrea.argnani@bo.ismar.cnr.it
AF: Istituto di Scienze Marine (ISMAR), Sede Territoriale di Bologna, Consiglio Nazionale delle
Ricerche, Via Gobetti 101, Bologna, 40129, Italy
AB:
Eastern Sicily is among the most exposed regions in Italy and in the whole Mediterranean to tsunami hazard and
risk. The historical tsunamis recorded here were generally associated to moderate-to-large magnitude
earthquakes. The largest tsunami documented in the area occurred on January 11th, 1693. It followed the
highest-magnitude earthquake (7.4) of the Italian seismic history. The tsunami, whose first significant motion
was a retreat along the entire eastern Sicily coastline, produced the most devastating effects at Augusta (15
meters run-up) and Catania, being relevant at Siracusa and Messina too. A lively debate exists on whether the
earthquake was the only source of the tsunami, or other causes (such as submarine landslides, possibly
triggered by the earthquake) contributed to the tsunami generation. In the framework of the EC funded project
TRANSFER, we investigate both hypotheses, starting from suitable onshore and offshore faults as well as from
offshore landslide bodies, and hence simulating numerically the ensuing tsunami and comparing the results
with the available historical information. We base on the results obtained during recent offshore surveys, in
particular the multichannel seismic survey MESC2001, carried out in year 2001 on board the R/V Urania of the
Italian National Council of Researches (CNR), which mapped both active normal faults and a number of possible
landslide bodies along the Hyblaean-Malta escarpment, the most prominent tectonic structure found just few
kilometres offshore eastern Sicily. From the modelling point of view, the initial condition for the earthquake-
generated tsunamis coincides with the vertical coseismic deformation of the seafloor. Instead, the landslide
motion is simulated through the Lagrangian block model UBO-BLOCK2, developed at the University of Bologna.
Finally, the finite-element code UBO-TSUFE, implemented by the same research team, is used to simulate the
tsunami generation and propagation. The main conclusions are: 1) if the earthquake is postulated to be the only
responsible for the tsunami, then the historical information can be reproduced only by assuming an offshore
tectonic source; 2) taking into account the largest of the mapped landslides, we are able to reproduce quite
satisfactorily both the first polarity and the size distribution of the tsunami; 3) we cannot rule out the idea that there
was a concurrent contribution of the earthquake and of the landslide in generating the tsunami.
DE: 0468 Natural hazards
DE: 3025 Marine seismics (0935, 7294)
DE: 3070 Submarine landslides
DE: 4564 Tsunamis and storm surges
DE: 7215 Earthquake source observations (1240)
SC: Seismology [S]
MN: 2007 Fall Meeting