Assessment of technogenic acoustic background influence on y-spectrometer readings at registration of y-radiation spectra

The paper presents theoretical and experimental data determining the effect of acoustic perturbation on the readings of a γ-detector (CGS) with a working medium (high-pressure xenon gas) operating in the field of ionizing radiation. For this purpose, a chain of events is considered: an acoustic wave...

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Main Authors: A. P. Elokhin, S. E. Ulin, A. I. Majidov, A. E. Shustov
Format: Article
Language:English
Published: Национальный исследовательский ядерный университет МИФИ 2024-04-01
Series:Глобальная ядерная безопасность
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Online Access:https://glonucsec.elpub.ru/jour/article/view/238
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author A. P. Elokhin
S. E. Ulin
A. I. Majidov
A. E. Shustov
author_facet A. P. Elokhin
S. E. Ulin
A. I. Majidov
A. E. Shustov
author_sort A. P. Elokhin
collection DOAJ
description The paper presents theoretical and experimental data determining the effect of acoustic perturbation on the readings of a γ-detector (CGS) with a working medium (high-pressure xenon gas) operating in the field of ionizing radiation. For this purpose, a chain of events is considered: an acoustic wave falls on the surface of the CGS, passes through and produces a perturbation in the gas which forms a non-uniformity of pressure distribution in the working medium. Exposure to ionising radiation leads to the formation of positive ions in the gas, the mobility of which is much lower than the mobility of free electrons, which are the main carriers in CGS. The experiments are carried out using an unmanned dosimetric complex BDK with a carrier in the form of (helicopter-type UAV) on which dosimetric equipment used for radiation control of the environment in conditions of its radioactive contamination is attached. Theoretical results obtained by solving the wave equation of sound wave passage in xenon filling the CGS are presented in the form of xenon density. The obtained data allowes us to obtain the radial distribution of the current density at different moments of the harmonic acoustic oscillation period. Experimental data demonstrated frequency characteristics of acoustic load and their amplitude values in different modes of UAV operation. The results of the research determine the recommendations that should be taken into account when using UAVs as carriers of dosimetric equipment in radiation monitoring of the environment.
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institution Kabale University
issn 2305-414X
2499-9733
language English
publishDate 2024-04-01
publisher Национальный исследовательский ядерный университет МИФИ
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series Глобальная ядерная безопасность
spelling doaj-art-6cda9162a80043c7b0d96b316c76c9e32024-11-19T13:46:56ZengНациональный исследовательский ядерный университет МИФИГлобальная ядерная безопасность2305-414X2499-97332024-04-010151610.26583/gns-2024-01-01192Assessment of technogenic acoustic background influence on y-spectrometer readings at registration of y-radiation spectraA. P. Elokhin0S. E. Ulin1A. I. Majidov2A. E. Shustov3Национальный исследовательский ядерный университет «МИФИ»Национальный исследовательский ядерный университет «МИФИ»Национальный исследовательский ядерный университет «МИФИ»Национальный исследовательский ядерный университет «МИФИ»The paper presents theoretical and experimental data determining the effect of acoustic perturbation on the readings of a γ-detector (CGS) with a working medium (high-pressure xenon gas) operating in the field of ionizing radiation. For this purpose, a chain of events is considered: an acoustic wave falls on the surface of the CGS, passes through and produces a perturbation in the gas which forms a non-uniformity of pressure distribution in the working medium. Exposure to ionising radiation leads to the formation of positive ions in the gas, the mobility of which is much lower than the mobility of free electrons, which are the main carriers in CGS. The experiments are carried out using an unmanned dosimetric complex BDK with a carrier in the form of (helicopter-type UAV) on which dosimetric equipment used for radiation control of the environment in conditions of its radioactive contamination is attached. Theoretical results obtained by solving the wave equation of sound wave passage in xenon filling the CGS are presented in the form of xenon density. The obtained data allowes us to obtain the radial distribution of the current density at different moments of the harmonic acoustic oscillation period. Experimental data demonstrated frequency characteristics of acoustic load and their amplitude values in different modes of UAV operation. The results of the research determine the recommendations that should be taken into account when using UAVs as carriers of dosimetric equipment in radiation monitoring of the environment.https://glonucsec.elpub.ru/jour/article/view/238беспилотный дозиметрический комплексакустическое воздействиемощность дозыгамма-спектрометр на основе ксенона высокого давленияволновое уравнение
spellingShingle A. P. Elokhin
S. E. Ulin
A. I. Majidov
A. E. Shustov
Assessment of technogenic acoustic background influence on y-spectrometer readings at registration of y-radiation spectra
Глобальная ядерная безопасность
беспилотный дозиметрический комплекс
акустическое воздействие
мощность дозы
гамма-спектрометр на основе ксенона высокого давления
волновое уравнение
title Assessment of technogenic acoustic background influence on y-spectrometer readings at registration of y-radiation spectra
title_full Assessment of technogenic acoustic background influence on y-spectrometer readings at registration of y-radiation spectra
title_fullStr Assessment of technogenic acoustic background influence on y-spectrometer readings at registration of y-radiation spectra
title_full_unstemmed Assessment of technogenic acoustic background influence on y-spectrometer readings at registration of y-radiation spectra
title_short Assessment of technogenic acoustic background influence on y-spectrometer readings at registration of y-radiation spectra
title_sort assessment of technogenic acoustic background influence on y spectrometer readings at registration of y radiation spectra
topic беспилотный дозиметрический комплекс
акустическое воздействие
мощность дозы
гамма-спектрометр на основе ксенона высокого давления
волновое уравнение
url https://glonucsec.elpub.ru/jour/article/view/238
work_keys_str_mv AT apelokhin assessmentoftechnogenicacousticbackgroundinfluenceonyspectrometerreadingsatregistrationofyradiationspectra
AT seulin assessmentoftechnogenicacousticbackgroundinfluenceonyspectrometerreadingsatregistrationofyradiationspectra
AT aimajidov assessmentoftechnogenicacousticbackgroundinfluenceonyspectrometerreadingsatregistrationofyradiationspectra
AT aeshustov assessmentoftechnogenicacousticbackgroundinfluenceonyspectrometerreadingsatregistrationofyradiationspectra