Production Optimization Using Different Scenarios of Gas Lift and ESP Installation

The production optimization is the key to increase the total production. However, proper production scenario is resulted from the complete reservoir model. The reservoir condition is the clue to find the best production method. This paper had summarized the different studies of gas lift and ESP inst...

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Main Authors: Bataee, Mahmood, Reisabadi, Mohammadreza Zare, Yahyazadeh, Amin
Format: Article
Institution: Universiti Teknologi Petronas
Record Id / ISBN-0: utp-eprints.10857 /
Published: Academic Research Online Publisher 2013
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Online Access: http://eprints.utp.edu.my/10857/1/AROPUB-IJPGE-13-18.pdf
http://www.aropub.org/journals/international-journal-of-petroleum-and-geoscience-engineering-ijpge/
http://eprints.utp.edu.my/10857/
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recordtype eprints
spelling utp-eprints.108572017-03-20T08:35:11Z Production Optimization Using Different Scenarios of Gas Lift and ESP Installation Bataee, Mahmood Reisabadi, Mohammadreza Zare Yahyazadeh, Amin TA Engineering (General). Civil engineering (General) The production optimization is the key to increase the total production. However, proper production scenario is resulted from the complete reservoir model. The reservoir condition is the clue to find the best production method. This paper had summarized the different studies of gas lift and ESP installation for real field data and compared it with the result of water and gas injection simulation. Different cases of production planning (including new infill wells, modification in reservoir simulation and etc.) had been done for next 40 years of the field life. Academic Research Online Publisher 2013 Article PeerReviewed application/pdf http://eprints.utp.edu.my/10857/1/AROPUB-IJPGE-13-18.pdf http://www.aropub.org/journals/international-journal-of-petroleum-and-geoscience-engineering-ijpge/ Bataee, Mahmood and Reisabadi, Mohammadreza Zare and Yahyazadeh, Amin (2013) Production Optimization Using Different Scenarios of Gas Lift and ESP Installation. International Journal of Petroleum and Geoscience Engineering (IJPGE), 1 (1). pp. 50-61. ISSN 2289-4713 http://eprints.utp.edu.my/10857/
institution Universiti Teknologi Petronas
collection UTP Institutional Repository
topic TA Engineering (General). Civil engineering (General)
spellingShingle TA Engineering (General). Civil engineering (General)
Bataee, Mahmood
Reisabadi, Mohammadreza Zare
Yahyazadeh, Amin
Production Optimization Using Different Scenarios of Gas Lift and ESP Installation
description The production optimization is the key to increase the total production. However, proper production scenario is resulted from the complete reservoir model. The reservoir condition is the clue to find the best production method. This paper had summarized the different studies of gas lift and ESP installation for real field data and compared it with the result of water and gas injection simulation. Different cases of production planning (including new infill wells, modification in reservoir simulation and etc.) had been done for next 40 years of the field life.
format Article
author Bataee, Mahmood
Reisabadi, Mohammadreza Zare
Yahyazadeh, Amin
author_sort Bataee, Mahmood
title Production Optimization Using Different Scenarios of Gas Lift and ESP Installation
title_short Production Optimization Using Different Scenarios of Gas Lift and ESP Installation
title_full Production Optimization Using Different Scenarios of Gas Lift and ESP Installation
title_fullStr Production Optimization Using Different Scenarios of Gas Lift and ESP Installation
title_full_unstemmed Production Optimization Using Different Scenarios of Gas Lift and ESP Installation
title_sort production optimization using different scenarios of gas lift and esp installation
publisher Academic Research Online Publisher
publishDate 2013
url http://eprints.utp.edu.my/10857/1/AROPUB-IJPGE-13-18.pdf
http://www.aropub.org/journals/international-journal-of-petroleum-and-geoscience-engineering-ijpge/
http://eprints.utp.edu.my/10857/
_version_ 1741196131572908032
score 11.62408