We here deal with technologies employing geophysical measurements to detect the soil-subsoil physical parameters distribution. In particular, we show the results of the testing of Unmanned Aerial System (UAS)- and ground-based instrumentations, such as: the magnetometer/gradiometer MagNimbus for the total magnetic field measurements (UAV-based); the Ground Penetrating Radar (GPR) Zond Aero LF (UAV-based); the multi-sensor magnetometer G-864 (ground-based); the electromagnetometer CMD Explorer 6L for the soil-subsoil electromagnetic conductivity evaluation (ground-based). The UAV-based acquisitions are performed using a DJI Matrice 300 RTK drone
Exploring the capabilities of geophysical technologies of the Itineris infrastructures for multiscale investigations of the soil subsoil system
Barone, Andrea;Accomando, Filippo;Esposito, Giuseppe;Vitale, Andrea;Castaldo, Raffaele;Gennarelli, Gianluca;De Novellis, Vincenzo;Pepe, Susi;Solaro, Giuseppe;Buonanno, Maurizio;Bonfante, Antonello;Tizzani, Pietro;Catapano, Ilaria
2025
Abstract
We here deal with technologies employing geophysical measurements to detect the soil-subsoil physical parameters distribution. In particular, we show the results of the testing of Unmanned Aerial System (UAS)- and ground-based instrumentations, such as: the magnetometer/gradiometer MagNimbus for the total magnetic field measurements (UAV-based); the Ground Penetrating Radar (GPR) Zond Aero LF (UAV-based); the multi-sensor magnetometer G-864 (ground-based); the electromagnetometer CMD Explorer 6L for the soil-subsoil electromagnetic conductivity evaluation (ground-based). The UAV-based acquisitions are performed using a DJI Matrice 300 RTK drone| File | Dimensione | Formato | |
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EGU25-19641.pdf
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Descrizione: Exploring the capabilities of geophysical technologies of the Itineris infrastructures for multiscale investigations of the soil subsoil system
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