Geology, tectonics and topography underlined by L'Aquila earthquake TIR precursors

Author:

Piroddi Luca1,Ranieri Gaetano1,Freund Friedemann23,Trogu Antonio1

Affiliation:

1. Department of Civil Engineering, Environmental Engineering and Architecture (DICAAR), University of Cagliari, Cagliari, Italy. E-mail: lucapiroddi@yahoo.it

2. Earth Sci. Div., NASA Ames Research Center, Moffett Field, CA, USA

3. Department of Physics, San Jose State University, San Jose, CA, USA

Abstract

Abstract Anomalous thermal infrared (TIR) emissions have widely been detected by satellite sensors before the major earthquakes. A recent processing technique for geostationary thermal data, developed for the case of the 2009 April 6, magnitude 6.3 L'Aquila earthquake, makes it possible to identify areas of enhanced TIR emissions around the epicentral region at a mean distance of less than 50 km but inside a radius of about 100 km. The index, called Night Thermal Gradient (NTG), derived from 4-D time-series data (two spatial and two temporal coordinates), identifies TIR anomalies by following the temperature trend during night, when the surface of the Earth is expected to cool. Leading up to the L'Aquila earthquake, an anomalous warming trend was observed. In this study, the anomalous NTG pattern is compared to the expected normal trend, taking into account the seismogenic faults, the overall tectonic setting, lithological spatial features, the orography and world stress map near the epicentral region. Main results are that a certain lithological selectivity can be recognized and that the known main stress field and seismogenic faults seem to be less important than certain tectonic lineaments, which are classified as non-seismogenic. The strong correlation between the topography and the TIR anomalies is in agreement with proposed physical mechanism for the generation of TIR anomalies. This relation is, in turn, present mainly in correspondence to two tectonic lineaments which in particular are thrusts: therefore, strong compressive states seem to be a positive condition for the generation of TIR anomalies. The temporary modification of these stress fields have triggered the Paganica Fault to its normal rupture mechanism. It is important to note that the distances, over which the TIR anomalies occurred, are an order of magnitude larger than the estimated length of the main fault rupture. Pixel-by-pixel time-series comparisons between the maximum TIR anomaly area and the epicentre of the main shock show that the increase in radiative emission occurred in the areas of maximum TIR anomalies and did not start by spreading outward from the epicentral region.

Publisher

Oxford University Press (OUP)

Subject

Geochemistry and Petrology,Geophysics

Reference29 articles.

1. Investigation of ULF magnetic pulsations, air conductivity changes, and infra red signatures associated with the 30 October 2007 Alum Rock M5.4 earthquake;Bleier;Nat. Hazards Earth Syst. Sci.,2009

2. Fractal analysis of a Quaternary fault array in the central Apennines, Italy;Cello;J. Struct. Geol.,1997

3. Normal faults and thrusts reactivated by deep fluids: the 6 April 2009 Mw 6.3 L'Aquila earthquake, central Italy;Di Luccio;J. geophys. Res.,2010

4. Integrating a robust option into a multiple regression computing environment, in computing science and statistics;DuMouchel,1989

5. Rocks that cranckle and sparkle and glow – strange pre-earthquake phenomena –;Freund;J. Sci. Explor.,2003

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