Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application
Electrical Capacitance Tomography (ECT) is a visualization tomographic modality that provides cross-sectional distribution information of any kind of multiphase flow. The paper aims to overcome the problems in the coal power plant which are sedimentation of pulverised coal in the piping system befor...
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my.utm.1007412023-04-30T10:27:57Z http://eprints.utm.my/id/eprint/100741/ Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application Hamzah, Ahmad Azahari Abdul Wahab, Yasmin Abdul Rahim, Ruzairi Jamal Mohamad, Farah Aina Ridzuan Aw, Suzanna Rahiman, Mohd. Hafiz Fazalul Pusppanathan, Jaysuman Ahmad, Nasarudin Abdul Manaf, Mohamad Shukri Chan, Kok San Green, R. G. Samsun Zaini, Nur Arina Hazwani Wahap, Ahmad Ridhwan TK Electrical engineering. Electronics Nuclear engineering Electrical Capacitance Tomography (ECT) is a visualization tomographic modality that provides cross-sectional distribution information of any kind of multiphase flow. The paper aims to overcome the problems in the coal power plant which are sedimentation of pulverised coal in the piping system before entering boiler system and non-uniform of its velocity. A single plane and dual-plane experiment were carried out to measure the solid velocity of PMMA material. Eight electrodes for each plane was implemented in this research. The single plane ECT system was able to determine the average axial velocity of the PMMA ball as it can be applied manually if there is no expensive software was implemented. Besides, the velocity measurement using dual-plane ECT sensor through the application of Parseval’s theorem and adaptation of parabolic fit interpolation method showed accurate results with the highest percentage error of 1.94%. Springer Science and Business Media Deutschland GmbH 2022 Book Section PeerReviewed Hamzah, Ahmad Azahari and Abdul Wahab, Yasmin and Abdul Rahim, Ruzairi and Jamal Mohamad, Farah Aina and Ridzuan Aw, Suzanna and Rahiman, Mohd. Hafiz Fazalul and Pusppanathan, Jaysuman and Ahmad, Nasarudin and Abdul Manaf, Mohamad Shukri and Chan, Kok San and Green, R. G. and Samsun Zaini, Nur Arina Hazwani and Wahap, Ahmad Ridhwan (2022) Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application. In: Control, Instrumentation and Mechatronics: Theory and Practice. Lecture Notes in Electrical Engineering, 921 (NA). Springer Science and Business Media Deutschland GmbH, Singapore, pp. 752-769. ISBN 978-981193922-8 http://dx.doi.org/10.1007/978-981-19-3923-5_65 DOI:10.1007/978-981-19-3923-5_65 |
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TK Electrical engineering. Electronics Nuclear engineering Hamzah, Ahmad Azahari Abdul Wahab, Yasmin Abdul Rahim, Ruzairi Jamal Mohamad, Farah Aina Ridzuan Aw, Suzanna Rahiman, Mohd. Hafiz Fazalul Pusppanathan, Jaysuman Ahmad, Nasarudin Abdul Manaf, Mohamad Shukri Chan, Kok San Green, R. G. Samsun Zaini, Nur Arina Hazwani Wahap, Ahmad Ridhwan Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application |
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Electrical Capacitance Tomography (ECT) is a visualization tomographic modality that provides cross-sectional distribution information of any kind of multiphase flow. The paper aims to overcome the problems in the coal power plant which are sedimentation of pulverised coal in the piping system before entering boiler system and non-uniform of its velocity. A single plane and dual-plane experiment were carried out to measure the solid velocity of PMMA material. Eight electrodes for each plane was implemented in this research. The single plane ECT system was able to determine the average axial velocity of the PMMA ball as it can be applied manually if there is no expensive software was implemented. Besides, the velocity measurement using dual-plane ECT sensor through the application of Parseval’s theorem and adaptation of parabolic fit interpolation method showed accurate results with the highest percentage error of 1.94%. |
format |
Book Section |
author |
Hamzah, Ahmad Azahari Abdul Wahab, Yasmin Abdul Rahim, Ruzairi Jamal Mohamad, Farah Aina Ridzuan Aw, Suzanna Rahiman, Mohd. Hafiz Fazalul Pusppanathan, Jaysuman Ahmad, Nasarudin Abdul Manaf, Mohamad Shukri Chan, Kok San Green, R. G. Samsun Zaini, Nur Arina Hazwani Wahap, Ahmad Ridhwan |
author_facet |
Hamzah, Ahmad Azahari Abdul Wahab, Yasmin Abdul Rahim, Ruzairi Jamal Mohamad, Farah Aina Ridzuan Aw, Suzanna Rahiman, Mohd. Hafiz Fazalul Pusppanathan, Jaysuman Ahmad, Nasarudin Abdul Manaf, Mohamad Shukri Chan, Kok San Green, R. G. Samsun Zaini, Nur Arina Hazwani Wahap, Ahmad Ridhwan |
author_sort |
Hamzah, Ahmad Azahari |
title |
Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application |
title_short |
Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application |
title_full |
Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application |
title_fullStr |
Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application |
title_full_unstemmed |
Investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application |
title_sort |
investigation of solid velocity measurement using single-plane versus dual-plane of electrical capacitance tomography for coal power plant application |
publisher |
Springer Science and Business Media Deutschland GmbH |
publishDate |
2022 |
url |
http://eprints.utm.my/id/eprint/100741/ http://dx.doi.org/10.1007/978-981-19-3923-5_65 |
_version_ |
1765296696650104832 |