HR: 1340h
AN: T53B-0492 [Abstracts]
TI: Active Faulting in the French Western Pyrenees: Paleoseismic and Macroseismic Evidence
AU: * Alasset, P
EM: pierrejean.alasset@eost.u-strasbg.fr
AF: Institut de Physique du Globe de Strasbourg - UMR7516 - EOST, 5, Rue Rene Descartes, Strasbourg, 67084
France
AU: Meghraoui, M
EM: mustapha@eost.u-strasbg.fr
AF: Institut de Physique du Globe de Strasbourg - UMR7516 - EOST, 5, Rue Rene Descartes, Strasbourg, 67084
France
AU: Cara, M
EM: michel.cara@eost.u-strasbg.fr
AF: Institut de Physique du Globe de Strasbourg - UMR7516 - EOST, 5, Rue Rene Descartes, Strasbourg, 67084
France
AB:
We have identified a 50-km-long active fault scarp between Lourdes and Arette in the French Pyrenees. This region was
affected by large and moderate earthquakes in 1660 (Io = VIII-IX), in 1750 (Io = VIII, Lourdes) and in 1967 (M=5.7, Io =
VIII, Arette). Historical and instrumental catalogues that extend back to the 14th century suggest an East-West elongated
active zone parallel to the Lourdes fault scarp. Most earthquakes in this area are shallow but available focal mechanism
solutions do not indicate a coherent pattern.
We have compared the felt areas of the main earthquakes in order to estimate their macroseismic magnitude. In addition we
re-calculate the instrumental magnitude of the 1967 earthquake (the largest instrumental earthquake recorded in the Pyrenees)
and determine a new focal mechanism solution according to WWSSN network data.
Paleoseismic studies conducted in this area indicate a fault scarp characterised by an East-West Trending 50-m-high
geomorphologic structure, composed of 3 continuous and linear segments. To the north, the fault controls Quaternary basins
and shows uplifted and tilted alluvial terraces along strike. Evidence for active faulting is indicated by stream channels
which are deviated and abandoned likely due to the successive uplift of the northern block of the fault. In Capbis and
Arcizac, geomorphic studies, georadar prospecting and trenching along the fault scarp illustrate the successive fault
movements during the late Holocene. Trenches exhibit shear contacts with flexural slip, and thrust ruptures with deformed
alluvial units in buried channels.
Geomorphologic and paleoseismic investigations, and magnitude-length scaling laws (Wells and Coppersmith, 1994) reveal that
the Lourdes fault has the potential of producing an earthquake with Mw 6.1 to 6.9. The fault would thus correspond to a major
seismic source in the western Pyrenees with possible magnitude larger than the 1660 main historical event.
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Reference : Wells, D.L., and Coppersmith, K.J., 1994, Bull. Seism. Soc. Am., 84/4, 974-1002.
UR: http://eost.u-strasbg.fr/recherche/Equipe7.html
DE: 7230 Seismicity and seismotectonics
DE: 8107 Continental neotectonics
DE: 1208 Crustal movements--intraplate (8110)
SC: Tectonophysics [T]
MN: 2004 AGU Fall Meeting