HR: 1340h
AN: T33C-0581 [Abstracts]
TI: Characterization of the Central Costa Rican Pacific Seismogenic Zone from an ``Amphibious'' Local
Seismological Network
AU: * Arroyo, I G
EM: iarroyo@ifm-geomar.de
AF: SFB574, Univ. of Kiel, Kiel, 24148
Germany
AU: Flueh, E
EM: eflueh@ifm-geomar.de
AF: SFB574, Univ. of Kiel, Kiel, 24148
Germany
AU: Flueh, E
EM: eflueh@ifm-geomar.de
AF: Leibniz Inst. for Marine Science, IfM-GEOMAR, Kiel, 24148
Germany
AU: Husen, S
EM: husen@sed.ethz.ch
AF: Swiss Seismological Service, ETH Hoenggerberg, Zurich, 8093
Switzerland
AU: Gossler, J
T33C-0581
AF: SFB574, Univ. of Kiel, Kiel, 24148
Germany
AU: Alvarado, G E
T33C-0581
AF: Inst. Costarricense de Electricidad, ICE, San Jose, 100032
Costa Rica
AU: Mora, M
T33C-0581
AF: Univ. of Costa Rica, San Pedro, San Jose, 214-2060
Costa Rica
AB:
The convergent margin along the Middle America Trench off Costa Rica has been the focus of the first stage of the project
SFB574 ``Volatiles and Fluids in Subduction Zones'', which aims to better understand the processes involved in the exchange
of fluids on erosive margins. The central Pacific region of Costa Rica has the highest seismicity rate along this sector of
the trench, coinciding with the subduction of rough-relief ocean floor, which includes seamounts and ridges. The area has
generated earthquakes with magnitude up to seven in the past, most recently a Mw-6.9 event in 1999 and a Mw-6.4 in 2002.
Precise local earthquake locations and detailed knowledge of the three-dimensional velocity structure provide valuable
insights into the dynamics and structure of the shallow part of the subduction zones, including the limits and geometry of
the seismogenic zone. As part of the project, 23 ocean bottom sensors and 15 land stations were deployed from April to
October 2002 in an area where a subducted seamount has been detected. Additional readings from 10 of the permanent stations
of the Red Sismológica Nacional (RSN) were included in the database improving the coverage to the expected downdip end of
the seismogenic zone. More than 2000 earthquakes were recorded in the target area over the six-month period. Most of the
earthquakes originated offshore, beneath the continental slope and along the plate interface. Fewer were generated close to
trench and within the subducting slab. To achieve precise earthquake locations and to serve as an initial model for local
earthquake tomography, we derived a minimum-1D model using a very high-quality subset of 262 events with 5004 P-wave arrivals
with the lowest reading uncertainty (±0.05 s). This model was applied to relocate all recorded earthquakes, and a new
subset of 540 events was selected for the 3D inversion of seismic velocities. We present the characteristics of the
seismogenic zone based on the tomographic results and precise hypocenter locations, and review the results in the light of
heat flow and controlled source seismology data for this area.
DE: 7240 Subduction zones (1207, 1219, 1240)
DE: 8123 Dynamics: seismotectonics
DE: 8170 Subduction zone processes (1031, 3060, 3613, 8413)
DE: 8180 Tomography (6982, 7270)
SC: Tectonophysics [T]
MN: Fall Meeting 2005