The Scorciabuoi Fault is one of the major tectonic structures affecting the Southern Apennines, Italy. Across its central sector, we performed several electrical resistivity tomographies with different electrode spacing (5 and 10 m) and using a multielectrode system with 32 electrodes. All tomographies have been acquired with two different arrays, the dipole-dipole and the Wenner-Schlumberger. We also tested the different sensibility of the two arrays with respect to the specific geological conditions and research goals. Detailed geological mapping and two boreholes where used to calibrate the electrical stratigraphy. In all but one tomography (purposely performed off the fault trace), we could recognise an abrupt subvertical lateral variation of the main sedimentary bodies showing the displacement and the sharp thickening of the two youngest alluvial bodies in the hanging-wall block. These features are interpreted as evidence of synsedimentary activity of the Scorciabuoi Fault during Late Pleistocene and possibly as recently as Holocene and allow us to precisely locate the fault trace within the Sauro alluvial plain.

Late Quaternary activity along the Scorciabuoi Fault (Southern Italy) as inferred from electrical resistivity tomographies

CAPUTO, Riccardo
Primo
;
2007

Abstract

The Scorciabuoi Fault is one of the major tectonic structures affecting the Southern Apennines, Italy. Across its central sector, we performed several electrical resistivity tomographies with different electrode spacing (5 and 10 m) and using a multielectrode system with 32 electrodes. All tomographies have been acquired with two different arrays, the dipole-dipole and the Wenner-Schlumberger. We also tested the different sensibility of the two arrays with respect to the specific geological conditions and research goals. Detailed geological mapping and two boreholes where used to calibrate the electrical stratigraphy. In all but one tomography (purposely performed off the fault trace), we could recognise an abrupt subvertical lateral variation of the main sedimentary bodies showing the displacement and the sharp thickening of the two youngest alluvial bodies in the hanging-wall block. These features are interpreted as evidence of synsedimentary activity of the Scorciabuoi Fault during Late Pleistocene and possibly as recently as Holocene and allow us to precisely locate the fault trace within the Sauro alluvial plain.
2007
Caputo, Riccardo; Salviulo, L.; Piscitelli, S.; Loperte, A.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11392/494280
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