Determination Transition Resistance of Cathode-Polarized Main Pipeline on Magnetometery Data

The article deals with the inverse problem of determining the transient resistance of the main pipeline insulating coating. For this, UAV measurements of the magnetic induction vector modulus of the magnetic field excited by the system of electrochemical cathodic protection of pipelines are used. Th...

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Autores principales: Vladimir N. Krizsky, Pavel N. Alexandrov, Alexey A. Kovalskii, Sergey V. Victorov
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Lenguaje:EN
Publicado: International Journal of Mathematical, Engineering and Management Sciences 2021
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Acceso en línea:https://doaj.org/article/229de290030b47cebb3f6dacc885cf2c
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spelling oai:doaj.org-article:229de290030b47cebb3f6dacc885cf2c2021-12-04T05:34:28ZDetermination Transition Resistance of Cathode-Polarized Main Pipeline on Magnetometery Data10.33889/IJMEMS.2021.6.6.1022455-7749https://doaj.org/article/229de290030b47cebb3f6dacc885cf2c2021-12-01T00:00:00Zhttps://ijmems.in/cms/storage/app/public/uploads/volumes/102-IJMEMS-21-0123-6-6-1729-1740-2021.pdfhttps://doaj.org/toc/2455-7749The article deals with the inverse problem of determining the transient resistance of the main pipeline insulating coating. For this, UAV measurements of the magnetic induction vector modulus of the magnetic field excited by the system of electrochemical cathodic protection of pipelines are used. The solution method is based on Tikhonov's method for finding the extremal of the regularizing functional. The developed algorithm is implemented in software. The results of computational experiments are presented.Vladimir N. KrizskyPavel N. AlexandrovAlexey A. KovalskiiSergey V. VictorovInternational Journal of Mathematical, Engineering and Management Sciencesarticlepipeline cathodic protectionuav-magnetometryinverse problemtransition resistance measurementTechnologyTMathematicsQA1-939ENInternational Journal of Mathematical, Engineering and Management Sciences, Vol 6, Iss 6, Pp 1729-1740 (2021)
institution DOAJ
collection DOAJ
language EN
topic pipeline cathodic protection
uav-magnetometry
inverse problem
transition resistance measurement
Technology
T
Mathematics
QA1-939
spellingShingle pipeline cathodic protection
uav-magnetometry
inverse problem
transition resistance measurement
Technology
T
Mathematics
QA1-939
Vladimir N. Krizsky
Pavel N. Alexandrov
Alexey A. Kovalskii
Sergey V. Victorov
Determination Transition Resistance of Cathode-Polarized Main Pipeline on Magnetometery Data
description The article deals with the inverse problem of determining the transient resistance of the main pipeline insulating coating. For this, UAV measurements of the magnetic induction vector modulus of the magnetic field excited by the system of electrochemical cathodic protection of pipelines are used. The solution method is based on Tikhonov's method for finding the extremal of the regularizing functional. The developed algorithm is implemented in software. The results of computational experiments are presented.
format article
author Vladimir N. Krizsky
Pavel N. Alexandrov
Alexey A. Kovalskii
Sergey V. Victorov
author_facet Vladimir N. Krizsky
Pavel N. Alexandrov
Alexey A. Kovalskii
Sergey V. Victorov
author_sort Vladimir N. Krizsky
title Determination Transition Resistance of Cathode-Polarized Main Pipeline on Magnetometery Data
title_short Determination Transition Resistance of Cathode-Polarized Main Pipeline on Magnetometery Data
title_full Determination Transition Resistance of Cathode-Polarized Main Pipeline on Magnetometery Data
title_fullStr Determination Transition Resistance of Cathode-Polarized Main Pipeline on Magnetometery Data
title_full_unstemmed Determination Transition Resistance of Cathode-Polarized Main Pipeline on Magnetometery Data
title_sort determination transition resistance of cathode-polarized main pipeline on magnetometery data
publisher International Journal of Mathematical, Engineering and Management Sciences
publishDate 2021
url https://doaj.org/article/229de290030b47cebb3f6dacc885cf2c
work_keys_str_mv AT vladimirnkrizsky determinationtransitionresistanceofcathodepolarizedmainpipelineonmagnetometerydata
AT pavelnalexandrov determinationtransitionresistanceofcathodepolarizedmainpipelineonmagnetometerydata
AT alexeyakovalskii determinationtransitionresistanceofcathodepolarizedmainpipelineonmagnetometerydata
AT sergeyvvictorov determinationtransitionresistanceofcathodepolarizedmainpipelineonmagnetometerydata
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