HR: 0830h
AN: S41C-0098 [PDF]
TI: 3D model of dip slip faults loaded by tectonic stress
AU: * cianetti, s
EM: spina@ingv.it
AF: Istituto Nazionale di Geofisica e Vulcanologia, Via di Vigna Murata 605, Roma, 00143
Italy
AU: Giunchi, C
EM: giunchi@ingv.it
AF: Istituto Nazionale di Geofisica e Vulcanologia, Via di Vigna Murata 605, Roma, 00143
Italy
AU: Spada, g
EM: spada@fis.uniurb.it
AF: Istituto di Fisica della Universita' di Urbino, Via Santa Chiara 27, Urbino, PU 61029
Italy
AU: Cocco, M
EM: cocco@ingv.it
AF: Istituto Nazionale di Geofisica e Vulcanologia, Via di Vigna Murata 605, Roma, 00143
Italy
AB:
A numerical 3D finite element model is used to study the effects of the tectonic stress field and lithostatic loading on the
dislocations of dip-slip
faults. Special contact elements are employed to deal with the fault surfaces,
and a Coulomb friction criterion is adopted. The model has been tested with
known solutions based on simple fault models embedded in an elastic halfspace.
We are able to predict the slip distribution and other quantities such as the
moment tensor, which can reproduce data inferred from observed
earthquakes. We study both single faults and fault systems focusing on the
coseismic stress and postseismic stress diffusion associated with the
relaxation of the ductile lower crust. The model is applied to the Umbria
Marche sequence (1997) in order to study the interaction between the main
shocks fault planes and the spatio-temporal migration of the earthquakes
distribution.
DE: 7209 Earthquake dynamics and mechanics
DE: 7223 Seismic hazard assessment and prediction
DE: 8164 Stresses--crust and lithosphere
SC: Seismology [S]
MN: 2003 Fall Meeting