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Research Article | Open Access

Measurement and characterization of infrasound waves from the March 25, 2023 thunderstorm at the near equatorial

Mario Batubara1( )Masa-yuki Yamamoto2Islam Hosni Hemdan Eldedsouki Hamama3Musthofa Lathif1Ibnu Fathrio4
Research Center for Space, National Research and Innovation Agency of Indonesia (BRIN), Indonesia
Kochi University of Technology, Japan
National Research Institute of Astronomy and Geophysics Department of Egyptian, Egypt
Research Center for Climate and Atmosphere, BRIN, Indonesia
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Abstract

Thunderstorm activity on March 25, 2023 provided a unique opportunity to study the mechanism of lightning events on changes in air pressure. In particular, this event made it possible to study changes in air pressure during thunderstorms using various instruments. This paper presented comprehensive results of infrasound, satellite data, weather radar and weather measurements at the ground during the storm. Observations of lightning events were confirmed using observational data from the International Space Station's Lightning Imaging Sensor (ISS LIS). This work estimated three spectral percentile values on infrasonic sensor data, time series interpolation of standard meteorology profiles, weather radar reflectivity and total radiant energy of lightning from ISS LIS observations during the day and night periods. As a result, during the investigation, it was seen that the recorded infrasound signal in the 0.6–0.8 Hertz (Hz) range was contaminated by background environmental noise, but in the 1–3 Hz band range it was consistent with the appearance of storms that produce high energy blows. Infrasound detection and electromagnetic lightning detection show good correlation up to a distance of 100 km from the infrasonic station. During a thunderstorm, the ISS LIS flight directly above the observation site detected more than 2,000 lightning events. In addition, the application of lightning detection from several independent instruments can provide a complete picture of the observed event.

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AIMS Geosciences
Pages 652-671

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Cite this article:
Batubara M, Yamamoto M-y, Hamama IHHE, et al. Measurement and characterization of infrasound waves from the March 25, 2023 thunderstorm at the near equatorial. AIMS Geosciences, 2023, 9(4): 652-671. https://doi.org/10.3934/geosci.2023035

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Received: 11 July 2023
Revised: 11 September 2023
Accepted: 25 October 2023
Published: 15 December 2023
©2023 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0)