Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application

The paper aims to investigate the possibility of an invasive method for electrical capacitance tomography system for steel pipe application. This work presents the development process for modeling an ECT (Electrical Capacitance Tomography) sensor using COMSOL Multiphysics. COMSOL Multiphysics softwa...

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Main Authors: Md. Jusob, Mohd. Shahrul, Abdul Wahab, Yasmin, Leow, Pei Ling, Abdul Rahim, Ruzairi, Ridzuan Aw. Abdullah, Suzanna, Jamaludin, Juliza, Abu Talip@Yusof, Nurhafizah, Abdul Karim, Rohana, Zakaria, Nor Farizan, Arshad, Nurul Wahidah, Saari, Mohd. Mawardi, Md. Zain, Zainah, Zawawi, Mohd. Anwar
Format: Article
Language:English
Published: Penerbit UTM Press 2021
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Online Access:http://eprints.utm.my/id/eprint/98342/1/RuzairiAbdulRahim2021_InitialStudyofInvasiveApproach.pdf
http://eprints.utm.my/id/eprint/98342/
https://elektrika.utm.my/index.php/ELEKTRIKA_Journal/article/view/327
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spelling my.utm.983422022-12-07T07:38:25Z http://eprints.utm.my/id/eprint/98342/ Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application Md. Jusob, Mohd. Shahrul Abdul Wahab, Yasmin Leow, Pei Ling Abdul Rahim, Ruzairi Ridzuan Aw. Abdullah, Suzanna Jamaludin, Juliza Abu Talip@Yusof, Nurhafizah Abdul Karim, Rohana Zakaria, Nor Farizan Arshad, Nurul Wahidah Saari, Mohd. Mawardi Md. Zain, Zainah Zawawi, Mohd. Anwar TK Electrical engineering. Electronics Nuclear engineering The paper aims to investigate the possibility of an invasive method for electrical capacitance tomography system for steel pipe application. This work presents the development process for modeling an ECT (Electrical Capacitance Tomography) sensor using COMSOL Multiphysics. COMSOL Multiphysics software is implemented as the main tool to model the ECT system. The 12 electrodes are modeled in 2-dimensional and it is based on the invasive approach. The ECT system is developed to obtain the electrical potential distribution between electrodes when an electric field is applied. Besides, it also obtains the permittivity distribution inside the closed pipe. This invasive approach is applied for the steel pipe that cannot be used with common ECT. Several positions of bubble air as the obstacle in the oil medium are tested. As a result, the sensor readings performance inside the region of interest is analyzed. Simultaneously, the tomograms are also obtained and analyzed using MATLAB software. A linear back-projection algorithm is implemented to reconstruct the image of the region of interest. Thus, the possibility of the ECT system applied for steel pipe can be observed and compared when there is a change of readings between the full oil and the existing obstacle inside the steel pipe. Besides, the tomograms for each condition tested can be observed. In short, the invasive approach for ECT is seen to be possible to apply for oil-gas application in steel pipe. The LBP algorithm with the average MSSIM value around 0.3 was able to detect the oil-gas regime inside the steel pipe. Penerbit UTM Press 2021-10-15 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/98342/1/RuzairiAbdulRahim2021_InitialStudyofInvasiveApproach.pdf Md. Jusob, Mohd. Shahrul and Abdul Wahab, Yasmin and Leow, Pei Ling and Abdul Rahim, Ruzairi and Ridzuan Aw. Abdullah, Suzanna and Jamaludin, Juliza and Abu Talip@Yusof, Nurhafizah and Abdul Karim, Rohana and Zakaria, Nor Farizan and Arshad, Nurul Wahidah and Saari, Mohd. Mawardi and Md. Zain, Zainah and Zawawi, Mohd. Anwar (2021) Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application. ELEKTRIKA- Journal of Electrical Engineering, 20 (2-3). pp. 107-110. ISSN 0128-4428 https://elektrika.utm.my/index.php/ELEKTRIKA_Journal/article/view/327 NA
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Md. Jusob, Mohd. Shahrul
Abdul Wahab, Yasmin
Leow, Pei Ling
Abdul Rahim, Ruzairi
Ridzuan Aw. Abdullah, Suzanna
Jamaludin, Juliza
Abu Talip@Yusof, Nurhafizah
Abdul Karim, Rohana
Zakaria, Nor Farizan
Arshad, Nurul Wahidah
Saari, Mohd. Mawardi
Md. Zain, Zainah
Zawawi, Mohd. Anwar
Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application
description The paper aims to investigate the possibility of an invasive method for electrical capacitance tomography system for steel pipe application. This work presents the development process for modeling an ECT (Electrical Capacitance Tomography) sensor using COMSOL Multiphysics. COMSOL Multiphysics software is implemented as the main tool to model the ECT system. The 12 electrodes are modeled in 2-dimensional and it is based on the invasive approach. The ECT system is developed to obtain the electrical potential distribution between electrodes when an electric field is applied. Besides, it also obtains the permittivity distribution inside the closed pipe. This invasive approach is applied for the steel pipe that cannot be used with common ECT. Several positions of bubble air as the obstacle in the oil medium are tested. As a result, the sensor readings performance inside the region of interest is analyzed. Simultaneously, the tomograms are also obtained and analyzed using MATLAB software. A linear back-projection algorithm is implemented to reconstruct the image of the region of interest. Thus, the possibility of the ECT system applied for steel pipe can be observed and compared when there is a change of readings between the full oil and the existing obstacle inside the steel pipe. Besides, the tomograms for each condition tested can be observed. In short, the invasive approach for ECT is seen to be possible to apply for oil-gas application in steel pipe. The LBP algorithm with the average MSSIM value around 0.3 was able to detect the oil-gas regime inside the steel pipe.
format Article
author Md. Jusob, Mohd. Shahrul
Abdul Wahab, Yasmin
Leow, Pei Ling
Abdul Rahim, Ruzairi
Ridzuan Aw. Abdullah, Suzanna
Jamaludin, Juliza
Abu Talip@Yusof, Nurhafizah
Abdul Karim, Rohana
Zakaria, Nor Farizan
Arshad, Nurul Wahidah
Saari, Mohd. Mawardi
Md. Zain, Zainah
Zawawi, Mohd. Anwar
author_facet Md. Jusob, Mohd. Shahrul
Abdul Wahab, Yasmin
Leow, Pei Ling
Abdul Rahim, Ruzairi
Ridzuan Aw. Abdullah, Suzanna
Jamaludin, Juliza
Abu Talip@Yusof, Nurhafizah
Abdul Karim, Rohana
Zakaria, Nor Farizan
Arshad, Nurul Wahidah
Saari, Mohd. Mawardi
Md. Zain, Zainah
Zawawi, Mohd. Anwar
author_sort Md. Jusob, Mohd. Shahrul
title Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application
title_short Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application
title_full Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application
title_fullStr Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application
title_full_unstemmed Initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application
title_sort initial study of invasive approach of electrical capacitance tomography for identifying non-conducting medium in steel pipe application
publisher Penerbit UTM Press
publishDate 2021
url http://eprints.utm.my/id/eprint/98342/1/RuzairiAbdulRahim2021_InitialStudyofInvasiveApproach.pdf
http://eprints.utm.my/id/eprint/98342/
https://elektrika.utm.my/index.php/ELEKTRIKA_Journal/article/view/327
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score 13.160551