HR: 0800h
AN: S51A-0139 [Abstracts]
TI: Precise relocation of earthquakes preceding the March 9, 1998 eruption of the Piton de la Fournaise
volcano
AU: * Battaglia, J
EM: battag@na.infn.it
AF: Dipartimento di Scienze Fisiche, Universita degli Studi di Napoli Federico II, Via Coroglio 156,
Napoli, 80124
Italy
AU: Got, J
EM: Jean-Luc.Got@univ-savoie.fr
AF: LGIT, Universite de Savoie, Le Bourget du Lac, 73376
France
AU: Staudacher, T
EM: Thomas.Staudacher@univ-reunion.fr
AF: Observatoire Volcanologique du Piton de la Fournaise, Institut de Physique du Globe de Paris, 14 RN3,
La Plaine des Cafres, 97148
France
AB:
The March 9, 1998 eruption of the Piton de la Fournaise volcano (R\'eunion island) was preceded by a seismic crisis unusually
long for this volcano. It lasted for more than 35 hours and included about 3100 micro-earthquakes with a maximum magnitude
of 2.2. During the crisis, the events migrated slowly and monotonically from a depth of about 5 km below sea level to the
surface, leading to the onset of the eruption. The arrival times of 1001 events have been determined using waveform
similarity and a set of reference events manually picked. This technique allows to greatly increase the number of located
events by including the small magnitude ones and also reduces the scattering related to the inconsistency in the manual phase
picking. The program hypo71 has been used with a 1D velocity model to obtain preliminary locations. From about 5 km b.s.l.
to sea level, the obtained locations define an almost continuous narrow vertical pass with a horizontal extend of the order
of a few hundred meters (about 200-400 meters). Above sea level the earthquakes do not indicate any clear migration. In order
to further improve the precision of the locations, and define eventual active structures, we searched for multiplets among
the located events. A total of about 770 earthquakes can be grouped into 16 multiplets of more than 5 events centered at
different depths along the migration path, some of them including events with reversed focal mechanisms. The application of
precise relative relocation techniques using waveform cross-correlation differential times enlightens several streaks or
planar features with various orientations. For some of the multiplets, clear upward migration of the earthquakes is observed
along the defined features.
DE: 8419 Eruption monitoring (7280)
DE: 8434 Magma migration
DE: 8494 Instruments and techniques
DE: 7280 Volcano seismology (8419)
SC: Seismology [S]
MN: 2004 AGU Fall Meeting