Optimization of perforated liner parameters in horizontal oil wells

Abstract Nowadays, horizontal wells play a vital role in the production from thin heavy oil reservoirs. Designing a suitable completion for this kind of reservoirs is a decisive factor to boost the efficiency of durable production. This study deals with the optimization of perforated liner design fo...

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Main Authors: Milad Ebrahimi Dastgerdi, Abbas Khaksar Manshad, Amir H. Mohammadi
Format: Article
Language:English
Published: SpringerOpen 2020-09-01
Series:Journal of Petroleum Exploration and Production Technology
Subjects:
Online Access:https://doi.org/10.1007/s13202-020-00951-z
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spelling doaj-747a67251eb346efa91dadda3b8e06262021-09-12T11:26:53ZengSpringerOpenJournal of Petroleum Exploration and Production Technology2190-05582190-05662020-09-011083505351410.1007/s13202-020-00951-zOptimization of perforated liner parameters in horizontal oil wellsMilad Ebrahimi Dastgerdi0Abbas Khaksar Manshad1Amir H. Mohammadi2Discipline of Chemical Engineering, School of Engineering, University of KwaZulu-NatalDepartment of Petroleum Engineering, Abadan Faculty of Petroleum Engineering, Petroleum University of Technology (PUT)Discipline of Chemical Engineering, School of Engineering, University of KwaZulu-NatalAbstract Nowadays, horizontal wells play a vital role in the production from thin heavy oil reservoirs. Designing a suitable completion for this kind of reservoirs is a decisive factor to boost the efficiency of durable production. This study deals with the optimization of perforated liner design for horizontal wells in Sarvak oil reservoir, which is located in the southwest of Iran. Sarvak is a carbonate oil reservoir, but it contains shale and mudstone. To avoid solid production and formation collapse, the screen liner was selected as a cost-effective solution. There were two choices, either perforated liner or slotted liner. The perforated liner was selected by finite element analysis and strength checking, which was proven by laboratory experiments. Sensitivity analysis was performed on various perforated parameters such as phase angle, hole density, hole diameter and hole distribution to determine the pattern of the holes so that enough strength of the liner was maintained while maintaining the maximum hole density. Then, parameters of perforated liner were determined by calculated loss of the flowing path, collapse resistance strength and tensile strength of casing pipes after perforated. As a result, hole density, hole size and perforated pattern were selected 100 HPM, 10 mm and 4-thread-line, respectively, in 4 ½” liner with 13.5 ppf. The ratio of the strength of the optimized perforated liner was less than 8% for collapse and 5% for tensile compared to the same specification casing.https://doi.org/10.1007/s13202-020-00951-zPerforated linerSlotted linerScreen linerCollapse analysisHorizontal wellOptimization
collection DOAJ
language English
format Article
sources DOAJ
author Milad Ebrahimi Dastgerdi
Abbas Khaksar Manshad
Amir H. Mohammadi
spellingShingle Milad Ebrahimi Dastgerdi
Abbas Khaksar Manshad
Amir H. Mohammadi
Optimization of perforated liner parameters in horizontal oil wells
Journal of Petroleum Exploration and Production Technology
Perforated liner
Slotted liner
Screen liner
Collapse analysis
Horizontal well
Optimization
author_facet Milad Ebrahimi Dastgerdi
Abbas Khaksar Manshad
Amir H. Mohammadi
author_sort Milad Ebrahimi Dastgerdi
title Optimization of perforated liner parameters in horizontal oil wells
title_short Optimization of perforated liner parameters in horizontal oil wells
title_full Optimization of perforated liner parameters in horizontal oil wells
title_fullStr Optimization of perforated liner parameters in horizontal oil wells
title_full_unstemmed Optimization of perforated liner parameters in horizontal oil wells
title_sort optimization of perforated liner parameters in horizontal oil wells
publisher SpringerOpen
series Journal of Petroleum Exploration and Production Technology
issn 2190-0558
2190-0566
publishDate 2020-09-01
description Abstract Nowadays, horizontal wells play a vital role in the production from thin heavy oil reservoirs. Designing a suitable completion for this kind of reservoirs is a decisive factor to boost the efficiency of durable production. This study deals with the optimization of perforated liner design for horizontal wells in Sarvak oil reservoir, which is located in the southwest of Iran. Sarvak is a carbonate oil reservoir, but it contains shale and mudstone. To avoid solid production and formation collapse, the screen liner was selected as a cost-effective solution. There were two choices, either perforated liner or slotted liner. The perforated liner was selected by finite element analysis and strength checking, which was proven by laboratory experiments. Sensitivity analysis was performed on various perforated parameters such as phase angle, hole density, hole diameter and hole distribution to determine the pattern of the holes so that enough strength of the liner was maintained while maintaining the maximum hole density. Then, parameters of perforated liner were determined by calculated loss of the flowing path, collapse resistance strength and tensile strength of casing pipes after perforated. As a result, hole density, hole size and perforated pattern were selected 100 HPM, 10 mm and 4-thread-line, respectively, in 4 ½” liner with 13.5 ppf. The ratio of the strength of the optimized perforated liner was less than 8% for collapse and 5% for tensile compared to the same specification casing.
topic Perforated liner
Slotted liner
Screen liner
Collapse analysis
Horizontal well
Optimization
url https://doi.org/10.1007/s13202-020-00951-z
work_keys_str_mv AT miladebrahimidastgerdi optimizationofperforatedlinerparametersinhorizontaloilwells
AT abbaskhaksarmanshad optimizationofperforatedlinerparametersinhorizontaloilwells
AT amirhmohammadi optimizationofperforatedlinerparametersinhorizontaloilwells
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