DocumentCode :
3076347
Title :
Ground-Penetrating Radar technique to investigate historic eruptions on the Mt. Etna volcano (Sicily, Italy)
Author :
Barone, P.M. ; Mattei, Eugenio ; Proietti, C. ; Pettinelli, E. ; Ferrara, C. ; Lauro, S.E. ; Viccaro, M.
Author_Institution :
Dept. Math. & Phys., Univ. of Roma Tre, Rome, Italy
fYear :
2013
fDate :
2-5 July 2013
Firstpage :
1
Lastpage :
6
Abstract :
In the present paper we demonstrate the capability of different remote sensing techniques to reconstruct the evolutionary history of the lava flows on the Mt. Etna volcano. A preliminary approach to the sites, based on aerial photogrammetry, DEM, and topographic analyses, supports an intense GPR (Ground Penetrating Radar) survey in several sites with different stratigraphical characteristics. The GPR measurements are performed with a bistatic system equipped with both 500 and 1000 MHz antennas. The use of different polarizations (TE, TM, Cross-Tx, and Cross-Rx) allow to extract subsurface features information having 3D geological structure reconstruction, electromagnetic nature information and properties of buried reflectors. This preliminary study highlights how the GPR technique provides, non-destructively, useful data to study the mechanisms of emplacement and the correlated hazard. Furthermore, if an inactive lava tubes can only be detected after the collapse of their vault, the use of GPR, on the contrary, could help to locate buried undamaged lava tubes and to measure their dimensions, providing useful structural information. Lava tubes, also, strongly influences the development of lava fields and the hazard connected with them, because they keep the lava thermally isolated causing a propagation longer than it would have done in an open channel. Additionally, the combined use of different remote sensing techniques can be useful to better estimate the thickness of the lava fields, giving precious data about the nature of the flow. Finally, the results highlight the importance of this combined approach to evaluate different physical parameters at the same time.
Keywords :
geophysical techniques; ground penetrating radar; remote sensing by radar; topography (Earth); volcanology; 3D geological structure reconstruction; DEM technique; GPR survey; Italy; Mt Etna volcano; Sicily; aerial photogrammetry; electromagnetic nature information; ground penetrating radar; historic eruptions; lava flow evolutionary history; remote sensing; stratigraphical characteristics; topographic analysis; Antenna measurements; Electron tubes; Geologic measurements; Ground penetrating radar; Radar antennas; Remote sensing; Volcanoes; Etna; GPR; NDT; polarization; remote sensing; volcanic stratigraphy;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Ground Penetrating Radar (IWAGPR), 2013 7th International Workshop on
Conference_Location :
Nantes
Print_ISBN :
978-1-4799-0937-7
Type :
conf
DOI :
10.1109/IWAGPR.2013.6601549
Filename :
6601549
Link To Document :
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