Applications of Ground-Based Infrared Cameras for Remote Sensing of Volcanic Plumes

Author:

Prata Fred12ORCID,Corradini Stefano3ORCID,Biondi Riccardo4ORCID,Guerrieri Lorenzo3ORCID,Merucci Luca3ORCID,Prata Andrew5,Stelitano Dario3ORCID

Affiliation:

1. AIRES Pty Ltd., Melbourne, VIC 3930, Australia

2. School of Electrical Engineering, Computing and Mathematical Sciences, Curtin University, Kent St., Bentley, Perth, WA 6102, Australia

3. Istituto Nazionale di Geofisica e Vulcanologia, Via di Vigna Murata, 605, 00143 Roma, Italy

4. CIMA Research Foundation, Via A Magilotto, 2, 17100 Savona, Italy

5. CSIRO Environment, Research Way, Clayton, VIC 3168, Australia

Abstract

Ground-based infrared cameras can be used effectively and safely to provide quantitative information about small to moderate-sized volcanic eruptions. This study describes an infrared camera that has been used to measure emissions from the Mt. Etna and Stromboli (Sicily, Italy) volcanoes. The camera provides calibrated brightness temperature images in a broadband (8–14 µm) channel that is used to determine height, plume ascent rate and volcanic cloud/plume temperature and emissivity at temporal sampling rates of up to 1 Hz. The camera can be operated in the field using a portable battery and includes a microprocessor, data storage and WiFi. The processing and analyses of the data are described with examples from the field experiments. The updraft speeds of the small eruptions at Stromboli are found to decay with a timescale of ∼10 min and the volcanic plumes reach thermal equilibrium within ∼2 min. A strong eruption of Mt. Etna on 1 April 2021 was found to reach ∼9 km, with ascent speeds of 10–20 ms−1. The plume, mostly composed of the gases CO2, water vapour and SO2, became bent over by the prevailing winds at high levels, demonstrating the need for multiple cameras to accurately infer plume heights.

Funder

European Space Agency

Publisher

MDPI AG

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