Estimation of Radon Flux Density Changes in Temporal Vicinity of the Shipunskoe Earthquake with Mw = 7.0, 17 August 2024 with the Use of the Hereditary Mathematical Model

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Název: Estimation of Radon Flux Density Changes in Temporal Vicinity of the Shipunskoe Earthquake with Mw = 7.0, 17 August 2024 with the Use of the Hereditary Mathematical Model
Autoři: Dmitrii Tverdyi, Evgeny Makarov, Roman Parovik
Zdroj: Geosciences ; Volume 15 ; Issue 1 ; Pages: 30
Informace o vydavateli: Multidisciplinary Digital Publishing Institute
Rok vydání: 2025
Sbírka: MDPI Open Access Publishing
Témata: mathematical modeling, radon volumetric activity, radon flux density, earthquake precursors, Gerasimov–Caputo fractional derivative, memory effect, non-locality, inverse problems, Levenberg–Marquardt algorithm, MATLAB, Gnuplot
Geografické téma: agris
Popis: Using the data of radon accumulation in a chamber with excess volume at one of the points of the Kamchatka subsurface gas-monitoring network, the change in radon flux density due to seismic waves and post-seismic relaxation of the medium is shown. A linear fractional equation is considered to be a model equation. The change of radon-transport intensity due to changes in the state of the geo-environment is described by a fractional Gerasimov–Caputo derivative of constant order. Presumably, the order of the fractional derivative is related to the radon-transport intensity in the geosphere. Using the Levenberg–Marquardt method, the optimal values of the model parameters were determined based on experimental data: air exchange coefficient and order of fractional derivative, which allowed the solving of the problems of radon flux density determination. Data in the temporal neighborhood of a strong earthquake with Mw=7.0, which occurred in the northern part of Avacha Bay on 17 August 2024, were used. As a result of the modeling, it is shown that the strong seismic impact and subsequent processes led to changes in the radon flux in the accumulation chamber. The obtained model curves agree well with the real data, and the obtained estimates of radon flux density agree with the theory.
Druh dokumentu: text
Popis souboru: application/pdf
Jazyk: English
Relation: Natural Hazards; https://dx.doi.org/10.3390/geosciences15010030
DOI: 10.3390/geosciences15010030
Dostupnost: https://doi.org/10.3390/geosciences15010030
Rights: https://creativecommons.org/licenses/by/4.0/
Přístupové číslo: edsbas.97C77C32
Databáze: BASE
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