Simulation study on synergetic effect of low saline water and polymer flooding

Low saline water and polymer injections are well established as effective enhanced oil recovery (EOR) techniques. However, the synergetic effect of combining the two methods is not fully studied and founded. In this study, three reservoir simulation case studies are carried out to compare the increm...

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Main Authors: Negash, B.M., Him, C.H.
Format: Book
Published: IOS Press 2023
Online Access:http://scholars.utp.edu.my/id/eprint/37637/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85172822781&doi=10.3233%2fAERD230013&partnerID=40&md5=51aa53aa7a11b3bf5255a4c8e7272579
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spelling oai:scholars.utp.edu.my:376372023-10-17T02:46:07Z http://scholars.utp.edu.my/id/eprint/37637/ Simulation study on synergetic effect of low saline water and polymer flooding Negash, B.M. Him, C.H. Low saline water and polymer injections are well established as effective enhanced oil recovery (EOR) techniques. However, the synergetic effect of combining the two methods is not fully studied and founded. In this study, three reservoir simulation case studies are carried out to compare the incremental oil recovery during the low flooding of saline water, polymer flooding and combined the low flooding of saline and polymer. The first two case studies employ different well patterns but of the same reservoir model. This was achieved by reconfiguring the placement of injector(s) and producer wells. In the first case, only one injector and one producer wells are located in the two far corners of the model. In the second case, four injectors and one producer wells are arranged in a 5-spot pattern. The numerical simulation results show that low salinity and high polymer concentration flooding has the highest oil recovery. It is also observed that the 5-spot well pattern has higher aerial sweep efficiency, with incremental recovery up to 67.3. The third case study involves a heterogeneous reservoir model which is simulated using stochastically generated permeability. In all the cases, the incremental oil recovery observed during combined low salinity and polymer flooding is significantly higher than the incremental oil recoveries observed when the two are injected independently. The improved oil recovery is attributed to the synergy of the wettability alterations and better sweep efficiency of low salinity water flooding and polymer flooding, respectively. © 2023 The Authors. IOS Press 2023 Book NonPeerReviewed Negash, B.M. and Him, C.H. (2023) Simulation study on synergetic effect of low saline water and polymer flooding. IOS Press, pp. 122-137. ISBN 9781643684192; 9781643684185 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85172822781&doi=10.3233%2fAERD230013&partnerID=40&md5=51aa53aa7a11b3bf5255a4c8e7272579 10.3233/AERD230013 10.3233/AERD230013 10.3233/AERD230013
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 Low saline water and polymer injections are well established as effective enhanced oil recovery (EOR) techniques. However, the synergetic effect of combining the two methods is not fully studied and founded. In this study, three reservoir simulation case studies are carried out to compare the incremental oil recovery during the low flooding of saline water, polymer flooding and combined the low flooding of saline and polymer. The first two case studies employ different well patterns but of the same reservoir model. This was achieved by reconfiguring the placement of injector(s) and producer wells. In the first case, only one injector and one producer wells are located in the two far corners of the model. In the second case, four injectors and one producer wells are arranged in a 5-spot pattern. The numerical simulation results show that low salinity and high polymer concentration flooding has the highest oil recovery. It is also observed that the 5-spot well pattern has higher aerial sweep efficiency, with incremental recovery up to 67.3. The third case study involves a heterogeneous reservoir model which is simulated using stochastically generated permeability. In all the cases, the incremental oil recovery observed during combined low salinity and polymer flooding is significantly higher than the incremental oil recoveries observed when the two are injected independently. The improved oil recovery is attributed to the synergy of the wettability alterations and better sweep efficiency of low salinity water flooding and polymer flooding, respectively. © 2023 The Authors.
format Book
author Negash, B.M.
Him, C.H.
spellingShingle Negash, B.M.
Him, C.H.
Simulation study on synergetic effect of low saline water and polymer flooding
author_facet Negash, B.M.
Him, C.H.
author_sort Negash, B.M.
title Simulation study on synergetic effect of low saline water and polymer flooding
title_short Simulation study on synergetic effect of low saline water and polymer flooding
title_full Simulation study on synergetic effect of low saline water and polymer flooding
title_fullStr Simulation study on synergetic effect of low saline water and polymer flooding
title_full_unstemmed Simulation study on synergetic effect of low saline water and polymer flooding
title_sort simulation study on synergetic effect of low saline water and polymer flooding
publisher IOS Press
publishDate 2023
url http://scholars.utp.edu.my/id/eprint/37637/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85172822781&doi=10.3233%2fAERD230013&partnerID=40&md5=51aa53aa7a11b3bf5255a4c8e7272579
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score 13.214268