Hereditary Mathematical Model of the Dynamics of Radon Accumulation in the Accumulation Chamber

Mathematical modeling is used to study the hereditary mechanism of the accumulation of radioactive radon gas in a chamber with gas-discharge counters at several observation points in Kamchatka. Continuous monitoring of variations in radon volumetric activity in order to identify anomalies in its val...

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Published in:Mathematics
Main Authors: Dmitrii Tverdyi, Evgeny Makarov, Roman Parovik
Format: Article in Journal/Newspaper
Language:English
Published: MDPI AG 2023
Subjects:
Online Access:https://doi.org/10.3390/math11040850
https://doaj.org/article/446b19ba83b84b81947e3a259255d57b
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spelling ftdoajarticles:oai:doaj.org/article:446b19ba83b84b81947e3a259255d57b 2023-05-15T16:59:24+02:00 Hereditary Mathematical Model of the Dynamics of Radon Accumulation in the Accumulation Chamber Dmitrii Tverdyi Evgeny Makarov Roman Parovik 2023-02-01T00:00:00Z https://doi.org/10.3390/math11040850 https://doaj.org/article/446b19ba83b84b81947e3a259255d57b EN eng MDPI AG https://www.mdpi.com/2227-7390/11/4/850 https://doaj.org/toc/2227-7390 doi:10.3390/math11040850 2227-7390 https://doaj.org/article/446b19ba83b84b81947e3a259255d57b Mathematics, Vol 11, Iss 850, p 850 (2023) mathematical modeling radon volumetric activity earthquake precursors saturation effect heredity memory effect Mathematics QA1-939 article 2023 ftdoajarticles https://doi.org/10.3390/math11040850 2023-02-26T01:29:21Z Mathematical modeling is used to study the hereditary mechanism of the accumulation of radioactive radon gas in a chamber with gas-discharge counters at several observation points in Kamchatka. Continuous monitoring of variations in radon volumetric activity in order to identify anomalies in its values is one of the effective methods for studying the stress–strain state of the geo-environment with the possibility of building strong earthquake forecasts. The model equation of radon transfer, taking into account its accumulation in the chamber and the presence of the hereditary effect (heredity or memory), is a nonlinear differential Riccati equation with non-constant coefficients with a fractional derivative in the sense of Gerasimov–Caputo, for which local initial conditions are set (Cauchy problem). The proposed hereditary model of radon accumulation in the chamber is a generalization of the previously known model with an integer derivative (classical model). This fact indicates the preservation of the properties of the previously obtained solution according to the classical model, as well as the presence of new properties that are applied to the study of radon volumetric activity at observation points. The paper shows that due to the order of the fractional derivative, as well as the quadratic nonlinearity in the model equation, the results of numerical simulation give a better approximation of the experimental data of radon monitoring than by classical models. This indicates that the hereditary model of radon transport is more flexible, which allows using it to describe various anomalous effects in the values of radon volume activity. Article in Journal/Newspaper Kamchatka Directory of Open Access Journals: DOAJ Articles Mathematics 11 4 850
institution Open Polar
collection Directory of Open Access Journals: DOAJ Articles
op_collection_id ftdoajarticles
language English
topic mathematical modeling
radon volumetric activity
earthquake precursors
saturation effect
heredity
memory effect
Mathematics
QA1-939
spellingShingle mathematical modeling
radon volumetric activity
earthquake precursors
saturation effect
heredity
memory effect
Mathematics
QA1-939
Dmitrii Tverdyi
Evgeny Makarov
Roman Parovik
Hereditary Mathematical Model of the Dynamics of Radon Accumulation in the Accumulation Chamber
topic_facet mathematical modeling
radon volumetric activity
earthquake precursors
saturation effect
heredity
memory effect
Mathematics
QA1-939
description Mathematical modeling is used to study the hereditary mechanism of the accumulation of radioactive radon gas in a chamber with gas-discharge counters at several observation points in Kamchatka. Continuous monitoring of variations in radon volumetric activity in order to identify anomalies in its values is one of the effective methods for studying the stress–strain state of the geo-environment with the possibility of building strong earthquake forecasts. The model equation of radon transfer, taking into account its accumulation in the chamber and the presence of the hereditary effect (heredity or memory), is a nonlinear differential Riccati equation with non-constant coefficients with a fractional derivative in the sense of Gerasimov–Caputo, for which local initial conditions are set (Cauchy problem). The proposed hereditary model of radon accumulation in the chamber is a generalization of the previously known model with an integer derivative (classical model). This fact indicates the preservation of the properties of the previously obtained solution according to the classical model, as well as the presence of new properties that are applied to the study of radon volumetric activity at observation points. The paper shows that due to the order of the fractional derivative, as well as the quadratic nonlinearity in the model equation, the results of numerical simulation give a better approximation of the experimental data of radon monitoring than by classical models. This indicates that the hereditary model of radon transport is more flexible, which allows using it to describe various anomalous effects in the values of radon volume activity.
format Article in Journal/Newspaper
author Dmitrii Tverdyi
Evgeny Makarov
Roman Parovik
author_facet Dmitrii Tverdyi
Evgeny Makarov
Roman Parovik
author_sort Dmitrii Tverdyi
title Hereditary Mathematical Model of the Dynamics of Radon Accumulation in the Accumulation Chamber
title_short Hereditary Mathematical Model of the Dynamics of Radon Accumulation in the Accumulation Chamber
title_full Hereditary Mathematical Model of the Dynamics of Radon Accumulation in the Accumulation Chamber
title_fullStr Hereditary Mathematical Model of the Dynamics of Radon Accumulation in the Accumulation Chamber
title_full_unstemmed Hereditary Mathematical Model of the Dynamics of Radon Accumulation in the Accumulation Chamber
title_sort hereditary mathematical model of the dynamics of radon accumulation in the accumulation chamber
publisher MDPI AG
publishDate 2023
url https://doi.org/10.3390/math11040850
https://doaj.org/article/446b19ba83b84b81947e3a259255d57b
genre Kamchatka
genre_facet Kamchatka
op_source Mathematics, Vol 11, Iss 850, p 850 (2023)
op_relation https://www.mdpi.com/2227-7390/11/4/850
https://doaj.org/toc/2227-7390
doi:10.3390/math11040850
2227-7390
https://doaj.org/article/446b19ba83b84b81947e3a259255d57b
op_doi https://doi.org/10.3390/math11040850
container_title Mathematics
container_volume 11
container_issue 4
container_start_page 850
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