DOE OSTI · 2588165
Observations and seismoacoustic simulations of earthquake-generated infrasound waves in non-epicentral regions
Abstract
We analysed infrasound waves associated with the Gyeongju earthquake (ML 5.8) that occurred on 2016 September 12, in the southeastern Korean Peninsula. For infrasound wave detection, the Progressive Multichannel Correlation method was applied to the infrasound data set recorded at seven arrays operating in South Korea at epicentral distances ranging from 178 to 472 km. Based on the back-projection method constrained by array-dependent celerity and azimuth deviation models, the source regions were identified in both the epicentral and non-epicentral regions. Remarkably, the non-epicentral secondary sources of this earthquake were located in regions with shallow water depths: (i) the western coastal area in the Yellow Sea and (ii) the shallow ocean basin and bank in the East Sea. The location results obtained from the earthquake could be corroborated through its foreshock (ML 5.1), yielding location results consistent with those of the main shock. The generation of infrasound waves over shallow water depths was fortuitously validated by direct recordings of dominant single-frequency (~0.3 Hz) infrasound waves at close range via temporary sensors near the ocean basin and bank. We interpreted that low-frequency infrasound signals could be generated from interactions among the ocean floor, shallow seawater and atmosphere. We performed numerical simulations of seismoacoustic fields to predict ground motions on the seafloor and acoustic transmission efficiency between the water and air interface. The simulations quantified the energy transfer through different media and clarified our observational results. We found that because this solid Earth‒water‒atmosphere coupled air wave has a relatively low frequency (~0.3 Hz), it can survive propagation over long distances compared with high-frequency infrasound waves generated in inland and mountain regions. In this study, we extend our understanding of water‒atmosphere coupling and the monitoring framework for earthquake-associated non-epicentral infrasound waves, encompassing not only inland ground shaking but also shallow sea regions located far from the epicentre.
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Che, Il-Young [Korea Institute of Geoscience and Mineral Resources (KIGAM), Daejeon (Korea, Republic of)] (ORCID:0000000219470833), Kim, Keehoon [Lawrence Livermore National Laboratory (LLNL), Livermore, CA (United States)] (ORCID:0000000286350428), Park, Junghyun [Southern Methodist Univ., Dallas, TX (United States)] (ORCID:0000000163706877), Park, Iseul [Korea Institute of Geoscience and Mineral Resources (KIGAM), Daejeon (Korea, Republic of)]. 2025-07-29. Observations and seismoacoustic simulations of earthquake-generated infrasound waves in non-epicentral regions. https://doi.org/10.1093/gji%2Fggaf288
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