Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors

This paper presents an experimental study of a single-plane dual-modality tomography (DMT) system integrat-ing electrical capacitance tomography (ECT) and ultrasonic tomography (UT) for water–oil–gas three-phase flow imaging. The soft-field (ECT) and hard-field (UT) systems measure differ-ent physical...

Full description

Bibliographic Details
Main Authors: Pusppanathan, Jaysuman, Abdul Rahim, Ruzairi, Phang, Fatin Aliah, Mohamad, Elmy Johana, Nor Ayob, Nor Muzakkir, Rahiman, Mohd Hafiz Fazalul, Chan, Kok Seong
Format: Article
Language:English
Published: IEEE 2017
Subjects:
Online Access:http://eprints.uthm.edu.my/5170/1/AJ%202017%20%28301%29%20Single-plane%20dual-modality%20tomography.pdf
_version_ 1825709977743917056
author Pusppanathan, Jaysuman
Abdul Rahim, Ruzairi
Phang, Fatin Aliah
Mohamad, Elmy Johana
Nor Ayob, Nor Muzakkir
Rahiman, Mohd Hafiz Fazalul
Chan, Kok Seong
author_facet Pusppanathan, Jaysuman
Abdul Rahim, Ruzairi
Phang, Fatin Aliah
Mohamad, Elmy Johana
Nor Ayob, Nor Muzakkir
Rahiman, Mohd Hafiz Fazalul
Chan, Kok Seong
author_sort Pusppanathan, Jaysuman
collection UTHM
description This paper presents an experimental study of a single-plane dual-modality tomography (DMT) system integrat-ing electrical capacitance tomography (ECT) and ultrasonic tomography (UT) for water–oil–gas three-phase flow imaging. The soft-field (ECT) and hard-field (UT) systems measure differ-ent physical parameters, making them both a fine combination in complementing each system’s limitations. The DMT system consists of 16 units of customized ECT sensors and 16 units of UT transducers, which are composited on a single-plane arrange-ment to perform concurrent measurement. A finite-element method is used to model and study its feasibility and performance before engaging with the actual hardware. The DMT system is carried out on a vertical test column and horizontal stratified flow to obtain sensor data from each modality by inspection of separate tomographic image using linear back-projection (LBP) image reconstruction algorithm and convolution back projection with Gaussian filtering (CBPF). A fuzzy logic pixel fusion method is used for image fusion process. To evaluate the reconstructed images, the mean structural similarity index (MSSIM) method and the mutual information method (MF) are employed on both the LBP and CBPF image results. The analysis and assessments proved that the CBPF method has successfully improvised the image results and thus has better MSSIM rating and MF over the LBP method with an enhancement up to 12.55% and 8.92%, respectively.
first_indexed 2024-03-05T21:50:36Z
format Article
id uthm.eprints-5170
institution Universiti Tun Hussein Onn Malaysia
language English
last_indexed 2024-03-05T21:50:36Z
publishDate 2017
publisher IEEE
record_format dspace
spelling uthm.eprints-51702022-01-06T03:49:44Z http://eprints.uthm.edu.my/5170/ Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors Pusppanathan, Jaysuman Abdul Rahim, Ruzairi Phang, Fatin Aliah Mohamad, Elmy Johana Nor Ayob, Nor Muzakkir Rahiman, Mohd Hafiz Fazalul Chan, Kok Seong TK Electrical engineering. Electronics Nuclear engineering TK7800-8360 Electronics This paper presents an experimental study of a single-plane dual-modality tomography (DMT) system integrat-ing electrical capacitance tomography (ECT) and ultrasonic tomography (UT) for water–oil–gas three-phase flow imaging. The soft-field (ECT) and hard-field (UT) systems measure differ-ent physical parameters, making them both a fine combination in complementing each system’s limitations. The DMT system consists of 16 units of customized ECT sensors and 16 units of UT transducers, which are composited on a single-plane arrange-ment to perform concurrent measurement. A finite-element method is used to model and study its feasibility and performance before engaging with the actual hardware. The DMT system is carried out on a vertical test column and horizontal stratified flow to obtain sensor data from each modality by inspection of separate tomographic image using linear back-projection (LBP) image reconstruction algorithm and convolution back projection with Gaussian filtering (CBPF). A fuzzy logic pixel fusion method is used for image fusion process. To evaluate the reconstructed images, the mean structural similarity index (MSSIM) method and the mutual information method (MF) are employed on both the LBP and CBPF image results. The analysis and assessments proved that the CBPF method has successfully improvised the image results and thus has better MSSIM rating and MF over the LBP method with an enhancement up to 12.55% and 8.92%, respectively. IEEE 2017 Article PeerReviewed text en http://eprints.uthm.edu.my/5170/1/AJ%202017%20%28301%29%20Single-plane%20dual-modality%20tomography.pdf Pusppanathan, Jaysuman and Abdul Rahim, Ruzairi and Phang, Fatin Aliah and Mohamad, Elmy Johana and Nor Ayob, Nor Muzakkir and Rahiman, Mohd Hafiz Fazalul and Chan, Kok Seong (2017) Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors. IEEE Sensors Journal, 17 (19). pp. 6368-6377. ISSN 1558-1748
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
TK7800-8360 Electronics
Pusppanathan, Jaysuman
Abdul Rahim, Ruzairi
Phang, Fatin Aliah
Mohamad, Elmy Johana
Nor Ayob, Nor Muzakkir
Rahiman, Mohd Hafiz Fazalul
Chan, Kok Seong
Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors
title Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors
title_full Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors
title_fullStr Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors
title_full_unstemmed Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors
title_short Single-plane dual-modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors
title_sort single plane dual modality tomography for multiphase flow imaging by integrating electrical capacitance and ultrasonic sensors
topic TK Electrical engineering. Electronics Nuclear engineering
TK7800-8360 Electronics
url http://eprints.uthm.edu.my/5170/1/AJ%202017%20%28301%29%20Single-plane%20dual-modality%20tomography.pdf
work_keys_str_mv AT pusppanathanjaysuman singleplanedualmodalitytomographyformultiphaseflowimagingbyintegratingelectricalcapacitanceandultrasonicsensors
AT abdulrahimruzairi singleplanedualmodalitytomographyformultiphaseflowimagingbyintegratingelectricalcapacitanceandultrasonicsensors
AT phangfatinaliah singleplanedualmodalitytomographyformultiphaseflowimagingbyintegratingelectricalcapacitanceandultrasonicsensors
AT mohamadelmyjohana singleplanedualmodalitytomographyformultiphaseflowimagingbyintegratingelectricalcapacitanceandultrasonicsensors
AT norayobnormuzakkir singleplanedualmodalitytomographyformultiphaseflowimagingbyintegratingelectricalcapacitanceandultrasonicsensors
AT rahimanmohdhafizfazalul singleplanedualmodalitytomographyformultiphaseflowimagingbyintegratingelectricalcapacitanceandultrasonicsensors
AT chankokseong singleplanedualmodalitytomographyformultiphaseflowimagingbyintegratingelectricalcapacitanceandultrasonicsensors