Experiment to distinguish two fumaroles consistently emanating infrasound at Kirishima Iwo-Yama

In the infrasonic observation of a fumarolic field, distinguishing multiple fumarolic sources is challenging. The array technique effectively estimates the source locations and identifies the target signal from other signals and noise. We conducted an experiment at Kirishima Iwo-Yama, Japan, where t...

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Veröffentlicht in:Earth, planets, and space planets, and space, 2023-12, Vol.75 (1), p.26-12, Article 26
Hauptverfasser: Yamakawa, Kazuya, Ichihara, Mie, Muramatsu, Dan, Matsushima, Takeshi, Takahashi, Hidetoshi, Wada, Ruka, Shimoyama, Isao
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Sprache:eng
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Zusammenfassung:In the infrasonic observation of a fumarolic field, distinguishing multiple fumarolic sources is challenging. The array technique effectively estimates the source locations and identifies the target signal from other signals and noise. We conducted an experiment at Kirishima Iwo-Yama, Japan, where two active fumarolic areas were separated by ~ 450 m. A three-element array with an aperture of ~ 20 m was installed between the two fumarolic areas. In addition, a single microphone was installed near one of the fumaroles. The array combined with the waveform correlation analysis estimated the most prominent source but failed to estimate the other weak source. A joint analysis of the array and the single microphone effectively resolved the two sources. It was also confirmed that newly developed power-saving MEMS microphones were useful for observing the fumaroles. This paper presents the instrumentation and analytical method that would be beneficial for monitoring volcanoes that have multiple hydrothermally active vents. Graphical Abstract
ISSN:1880-5981
1343-8832
1880-5981
DOI:10.1186/s40623-023-01777-9