Measurement of Streaming Potential in Downhole Application: An Insight for Enhanced Oil Recovery Monitoring

Downhole monitoring using streaming potential measurement has been developing in order to respond to actual reservoir condition. Most studies have emphasized on monitoring water flooding at various reservoir condition and improving the approaches of measurement. Enhanced Oil Recovery (EOR) could sig...

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Main Authors: Tengku Mohd Tengku Amran, Jaafar Mohd Zaidi, Ali Rasol Azad Anugerah, Hamid Mohd Fauzi
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20178703002
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author Tengku Mohd Tengku Amran
Jaafar Mohd Zaidi
Ali Rasol Azad Anugerah
Hamid Mohd Fauzi
author_facet Tengku Mohd Tengku Amran
Jaafar Mohd Zaidi
Ali Rasol Azad Anugerah
Hamid Mohd Fauzi
author_sort Tengku Mohd Tengku Amran
collection DOAJ
description Downhole monitoring using streaming potential measurement has been developing in order to respond to actual reservoir condition. Most studies have emphasized on monitoring water flooding at various reservoir condition and improving the approaches of measurement. Enhanced Oil Recovery (EOR) could significantly improve oil recovery and the efficiency of the process should be well-monitored. Alkaline-surfactant-polymer (ASP) flooding is the most promising chemical EOR method due to its synergy of alkaline, surfactant and polymer, which could enhance the extraction of residual oil. However, limited studies have been focused on the application of streaming potential in EOR processes, particularly ASP. Thus, this paper aims to review the streaming potential measurement in downhole monitoring with an insight for EOR application and propose the potential measurement in monitoring ASP flooding. It is important for a preliminary study to investigate the synergy in ASP and the effects on oil recovery. The behaviour of streaming potential should be investigated when the environment of porous media changes with respect to ASP flooding. Numerical model can be generated from the experimental data to forecast the measured streaming potential signal during production associated with ASP flooding. Based on the streaming potential behaviour on foam assisted water alternate gas (FAWAG) and water alternate gas (WAG) processes, it is expected that the streaming potential could change significantly when ASP flooding alters the environment and surface properties of porous media. The findings could provide new prospect and knowledge in the relationship between streaming potential and ASP mechanisms, which could be a potential approach in monitoring the efficiency of the process.
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spelling doaj.art-b44b999126bf4c03b08c348f0c34ae002022-12-21T23:35:15ZengEDP SciencesMATEC Web of Conferences2261-236X2017-01-01870300210.1051/matecconf/20178703002matecconf_encon2017_03002Measurement of Streaming Potential in Downhole Application: An Insight for Enhanced Oil Recovery MonitoringTengku Mohd Tengku AmranJaafar Mohd Zaidi0Ali Rasol Azad Anugerah1Hamid Mohd Fauzi2Faculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia, SkudaiFaculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia, SkudaiFaculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia, SkudaiDownhole monitoring using streaming potential measurement has been developing in order to respond to actual reservoir condition. Most studies have emphasized on monitoring water flooding at various reservoir condition and improving the approaches of measurement. Enhanced Oil Recovery (EOR) could significantly improve oil recovery and the efficiency of the process should be well-monitored. Alkaline-surfactant-polymer (ASP) flooding is the most promising chemical EOR method due to its synergy of alkaline, surfactant and polymer, which could enhance the extraction of residual oil. However, limited studies have been focused on the application of streaming potential in EOR processes, particularly ASP. Thus, this paper aims to review the streaming potential measurement in downhole monitoring with an insight for EOR application and propose the potential measurement in monitoring ASP flooding. It is important for a preliminary study to investigate the synergy in ASP and the effects on oil recovery. The behaviour of streaming potential should be investigated when the environment of porous media changes with respect to ASP flooding. Numerical model can be generated from the experimental data to forecast the measured streaming potential signal during production associated with ASP flooding. Based on the streaming potential behaviour on foam assisted water alternate gas (FAWAG) and water alternate gas (WAG) processes, it is expected that the streaming potential could change significantly when ASP flooding alters the environment and surface properties of porous media. The findings could provide new prospect and knowledge in the relationship between streaming potential and ASP mechanisms, which could be a potential approach in monitoring the efficiency of the process.http://dx.doi.org/10.1051/matecconf/20178703002
spellingShingle Tengku Mohd Tengku Amran
Jaafar Mohd Zaidi
Ali Rasol Azad Anugerah
Hamid Mohd Fauzi
Measurement of Streaming Potential in Downhole Application: An Insight for Enhanced Oil Recovery Monitoring
MATEC Web of Conferences
title Measurement of Streaming Potential in Downhole Application: An Insight for Enhanced Oil Recovery Monitoring
title_full Measurement of Streaming Potential in Downhole Application: An Insight for Enhanced Oil Recovery Monitoring
title_fullStr Measurement of Streaming Potential in Downhole Application: An Insight for Enhanced Oil Recovery Monitoring
title_full_unstemmed Measurement of Streaming Potential in Downhole Application: An Insight for Enhanced Oil Recovery Monitoring
title_short Measurement of Streaming Potential in Downhole Application: An Insight for Enhanced Oil Recovery Monitoring
title_sort measurement of streaming potential in downhole application an insight for enhanced oil recovery monitoring
url http://dx.doi.org/10.1051/matecconf/20178703002
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