Condensate banking removal: study on ultrasonic amplitude effect

Hydrocarbons in a gas condensate reservoir consist of a wide variety of molecules which will react varyingly with the change of pressure inside the reservoir and wellbore. The presence of heavier ended hydrocarbons such as C5 and above, condensate banking will occur as pressure depletes. Pressure dr...

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Main Authors: Ainuddin, A., Aziz, N.A.A., Soom, N.A.A.M.
Format: Article
Published: Springer Science and Business Media Deutschland GmbH 2021
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85113225900&doi=10.1007%2fs13202-021-01257-4&partnerID=40&md5=f68e5173653cae847b1c0bdd05626f9e
http://eprints.utp.edu.my/30380/
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spelling my.utp.eprints.303802022-03-25T06:45:03Z Condensate banking removal: study on ultrasonic amplitude effect Ainuddin, A. Aziz, N.A.A. Soom, N.A.A.M. Hydrocarbons in a gas condensate reservoir consist of a wide variety of molecules which will react varyingly with the change of pressure inside the reservoir and wellbore. The presence of heavier ended hydrocarbons such as C5 and above, condensate banking will occur as pressure depletes. Pressure drop below dew point pressure causes condensate buildup which will give a negative impact in the productivity index of a gas condensate reservoir. Gas condensate reservoirs experience liquid drop out when pressure depletion reaches below dew point pressure. This occurrence will eventually cause condensate banking over time of production where condensate builds up in pore spaces of near-wellbore formations. Due to increase in condensate saturation, gas mobility is reduced and causes reduction of recoverable hydrocarbons. Instead of remediating production loss by using unsustainable recovery techniques, sonication is used to assist the natural flow of a gas condensate reservoir. This study aims to evaluate the effects of various ultrasonic amplitudes on condensate removal in a heterogenous glass pack in flowing conditions with varying exposure durations. Experiments were conducted by using n-Decane and a glass pack to represent condensate banking and near-wellbore area. Carbon dioxide was flowed through the pack to represent flowing gas from the reservoir after sonication of 10, 50 and 100 amplitudes (20 kHz and 20 Watts). Analysis of results shows recovery of up to 17.36 and an areal sweep efficiency increase in 24.33 after sonication of 100 amplitude for 120 min due to reduction in viscosity. It was concluded that sweeping efficiency and reciprocal mobility ratio are increased with sonication of 100 amplitude for 120 min. This indicates that mobility of n-Decane is improved after sonication to allow higher hydrocarbon liquid production. Insights into the aspects of the mechanical wave are expected to contribute to a better understanding of tuning the sonic wave, to deliver remarkable results in a closed solid and fluid system. This form of IOR has not only proved to be an effective method to increase productivity in gas condensate wells, but it is also an environmentally sustainable and cost-effective method. © 2021, The Author(s). Springer Science and Business Media Deutschland GmbH 2021 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85113225900&doi=10.1007%2fs13202-021-01257-4&partnerID=40&md5=f68e5173653cae847b1c0bdd05626f9e Ainuddin, A. and Aziz, N.A.A. and Soom, N.A.A.M. (2021) Condensate banking removal: study on ultrasonic amplitude effect. Journal of Petroleum Exploration and Production Technology, 11 (9). pp. 3559-3569. http://eprints.utp.edu.my/30380/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Hydrocarbons in a gas condensate reservoir consist of a wide variety of molecules which will react varyingly with the change of pressure inside the reservoir and wellbore. The presence of heavier ended hydrocarbons such as C5 and above, condensate banking will occur as pressure depletes. Pressure drop below dew point pressure causes condensate buildup which will give a negative impact in the productivity index of a gas condensate reservoir. Gas condensate reservoirs experience liquid drop out when pressure depletion reaches below dew point pressure. This occurrence will eventually cause condensate banking over time of production where condensate builds up in pore spaces of near-wellbore formations. Due to increase in condensate saturation, gas mobility is reduced and causes reduction of recoverable hydrocarbons. Instead of remediating production loss by using unsustainable recovery techniques, sonication is used to assist the natural flow of a gas condensate reservoir. This study aims to evaluate the effects of various ultrasonic amplitudes on condensate removal in a heterogenous glass pack in flowing conditions with varying exposure durations. Experiments were conducted by using n-Decane and a glass pack to represent condensate banking and near-wellbore area. Carbon dioxide was flowed through the pack to represent flowing gas from the reservoir after sonication of 10, 50 and 100 amplitudes (20 kHz and 20 Watts). Analysis of results shows recovery of up to 17.36 and an areal sweep efficiency increase in 24.33 after sonication of 100 amplitude for 120 min due to reduction in viscosity. It was concluded that sweeping efficiency and reciprocal mobility ratio are increased with sonication of 100 amplitude for 120 min. This indicates that mobility of n-Decane is improved after sonication to allow higher hydrocarbon liquid production. Insights into the aspects of the mechanical wave are expected to contribute to a better understanding of tuning the sonic wave, to deliver remarkable results in a closed solid and fluid system. This form of IOR has not only proved to be an effective method to increase productivity in gas condensate wells, but it is also an environmentally sustainable and cost-effective method. © 2021, The Author(s).
format Article
author Ainuddin, A.
Aziz, N.A.A.
Soom, N.A.A.M.
spellingShingle Ainuddin, A.
Aziz, N.A.A.
Soom, N.A.A.M.
Condensate banking removal: study on ultrasonic amplitude effect
author_facet Ainuddin, A.
Aziz, N.A.A.
Soom, N.A.A.M.
author_sort Ainuddin, A.
title Condensate banking removal: study on ultrasonic amplitude effect
title_short Condensate banking removal: study on ultrasonic amplitude effect
title_full Condensate banking removal: study on ultrasonic amplitude effect
title_fullStr Condensate banking removal: study on ultrasonic amplitude effect
title_full_unstemmed Condensate banking removal: study on ultrasonic amplitude effect
title_sort condensate banking removal: study on ultrasonic amplitude effect
publisher Springer Science and Business Media Deutschland GmbH
publishDate 2021
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85113225900&doi=10.1007%2fs13202-021-01257-4&partnerID=40&md5=f68e5173653cae847b1c0bdd05626f9e
http://eprints.utp.edu.my/30380/
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