Lava fountain jet noise during the 2018 eruption of fissure 8 of Kīlauea volcano

Gestrich, Julia E. and Fee, David and Matoza, Robin S. and Lyons, John J. and Dietterich, Hannah R. and Cigala, Valeria and Kueppers, Ulrich and Patrick, Matthew R. and Parcheta, Carolyn E. (2022) Lava fountain jet noise during the 2018 eruption of fissure 8 of Kīlauea volcano. Frontiers in Earth Science, 10. ISSN 2296-6463

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Abstract

Real-time monitoring is crucial to assess hazards and mitigate risks of sustained volcanic eruptions that last hours to months or more. Sustained eruptions have been shown to produce a low frequency (infrasonic) form of jet noise. We analyze the lava fountaining at fissure 8 during the 2018 Lower East Rift Zone eruption of Kīlauea volcano, Hawaii, and connect changes in fountain properties with recorded infrasound signals from an array about 500 m from the fountain using jet noise scaling laws and visual imagery. Video footage from the eruption reveals a change in lava fountain dynamics from a tall, distinct fountain at the beginning of June to a low fountain with a turbulent, out-pouring lava pond surrounded by a tephra cone by mid-June. During mid-June, the sound pressure level reaches a maximum, and peak frequency drops. We develop a model that uses jet noise scaling relationships to estimate changes in volcanic jet diameter and jet velocity from infrasound sound pressure levels and peak frequencies. The results of this model indicate a decrease in velocity in mid-June which coincides with the decrease in fountain height. Furthermore, the model results suggest an increase in jet diameter, which can be explained by the larger width of the fountain that resembles a turbulent lava pond compared to the distinct fountain at the beginning of June. The agreement between the infrasound-derived and visually observed changes in fountain dynamics suggests that jet noise scaling relationships can be used to monitor lava fountain dynamics using infrasound recordings.

Item Type: Article
Subjects: STM Open Press > Geological Science
Depositing User: Unnamed user with email support@stmopenpress.com
Date Deposited: 21 Feb 2023 08:09
Last Modified: 31 Jul 2024 12:57
URI: http://journal.submissionpages.com/id/eprint/406

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