Active tectonics in Southern Portugal (SW Iberia) inferred from GPS data. Implications on the regional geodynamics
Autor: | V. B. Mendes, Joaquim Pagarete, António Brum da Silveira, João Cabral, Paula M. Figueiredo, António Ribeiro, Ricardo Ressurreição, Ruben P. Dias |
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Rok vydání: | 2017 |
Předmět: |
geography
geography.geographical_feature_category 010504 meteorology & atmospheric sciences Seismotectonics Magnitude (mathematics) Active fault Fault (geology) Geodynamics 010502 geochemistry & geophysics 01 natural sciences Plate tectonics Tectonics Geophysics Shear zone Geology Seismology 0105 earth and related environmental sciences Earth-Surface Processes |
Zdroj: | Journal of Geodynamics. 112:1-11 |
ISSN: | 0264-3707 |
Popis: | A GPS-based crustal velocity field for the SW Portuguese territory (Algarve region, SW Iberia) was estimated from the analysis of data from a network of campaign-style GPS stations set up in the region since 1998, complemented with permanent stations, covering an overall period of 16.5 years. The GPS monitoring sites were chosen attending to the display of the regional active faults, in an attempt to detect and monitor any related crustal straining. The residual horizontal velocities relative to Eurasia unveil a relatively consistent pattern towards WNW, with magnitudes that noticeably increase from NNE to SSW. Although the obtained velocity field does not evidence a sharp velocity gradient it suggests the presence of a NW-SE trending crustal shear zone separating two domains, which may be slowly accumulating a slightly transtensional right-lateral shear strain. Based on the WNW velocity differential between the northeastern block and the southwestern block, a shear strain rate accumulation across the shear zone is estimated. This ongoing crustal deformation is taken as evidence that a nearby major active structure, the Sao Marcos − Quarteira fault, may be presently accumulating strain, therefore being potentially loaded for seismic rupture and the generation of a large magnitude earthquake. Further inferences are made concerning the interseismic dynamic loading of other major onshore and offshore active structures located to the west. |
Databáze: | OpenAIRE |
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