Design Methodology of Overshot Inverted Swellable Elastomer Packer

During past 7 years, swellable elastomer technology has been introduced to the oilfield and its acceptance has been so rapid that its scope of application has been rapidly expanded. But throughout this paper, the usage of Swellable Elastomer Packer (SEPs) has been challenged as existing-to-new tubin...

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Main Author: Adnan bin Hanapai, Adnan
Format: Final Year Project
Language:English
Published: Universiti Teknologi Petronas 2012
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Online Access:http://utpedia.utp.edu.my/5739/1/Dissertation%20Report%20Adnan%20bin%20Hanapai.pdf
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spelling my-utp-utpedia.57392017-01-25T09:39:50Z http://utpedia.utp.edu.my/5739/ Design Methodology of Overshot Inverted Swellable Elastomer Packer Adnan bin Hanapai, Adnan TN Mining engineering. Metallurgy During past 7 years, swellable elastomer technology has been introduced to the oilfield and its acceptance has been so rapid that its scope of application has been rapidly expanded. But throughout this paper, the usage of Swellable Elastomer Packer (SEPs) has been challenged as existing-to-new tubing connector during workover. This project needs to be constructed as such the Inverted SEP manages to handle wellbore parameters from the inside of the tubing itself. Three primary challenges must be addressed when designing SEPs for the above stated applications: 1. The downhole conditions; i.e., the main parameters to which the tool will be subjected such as the downhole pressure increase and the average temperature drop of the sealing elements. 2. Thermal contraction of the sealing element; i.e., contraction that occurs during high rate pumping cooling effect will cause lower anchoring force of the sealing elements. 3. Design concept & workover method; i.e., thorough simulation and discussion on combined technology between Overshot BHA and Swellable Elastomer Packer (SEPs) modified for inward swelling and new tubing latch-on method. These applications of workover scenario include condemn or damaged of the top subsurface tool (i.e. Surface Control Subsurface Safety Valve SCSSSV and Side Pocket Mandrel SPM). With this new technology – Overshot Inverted Swellpacker, same result with lower operation margin cost can be achieved. This paper describes the technical challenges and discusses resulting design methodology based on modeling (downhole parameters, anchoring forces, thermal contraction measurements, tool workover simulation and etc.) that have been developed to resolve these issues. This design methodology is not limited to only workover but also applicable to any scenario with dynamic loads on SEP applications such as in high rate injection wells, etc.. Universiti Teknologi Petronas 2012-09 Final Year Project NonPeerReviewed application/pdf en http://utpedia.utp.edu.my/5739/1/Dissertation%20Report%20Adnan%20bin%20Hanapai.pdf Adnan bin Hanapai, Adnan (2012) Design Methodology of Overshot Inverted Swellable Elastomer Packer. Universiti Teknologi Petronas. (Unpublished)
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Electronic and Digitized Intellectual Asset
url_provider http://utpedia.utp.edu.my/
language English
topic TN Mining engineering. Metallurgy
spellingShingle TN Mining engineering. Metallurgy
Adnan bin Hanapai, Adnan
Design Methodology of Overshot Inverted Swellable Elastomer Packer
description During past 7 years, swellable elastomer technology has been introduced to the oilfield and its acceptance has been so rapid that its scope of application has been rapidly expanded. But throughout this paper, the usage of Swellable Elastomer Packer (SEPs) has been challenged as existing-to-new tubing connector during workover. This project needs to be constructed as such the Inverted SEP manages to handle wellbore parameters from the inside of the tubing itself. Three primary challenges must be addressed when designing SEPs for the above stated applications: 1. The downhole conditions; i.e., the main parameters to which the tool will be subjected such as the downhole pressure increase and the average temperature drop of the sealing elements. 2. Thermal contraction of the sealing element; i.e., contraction that occurs during high rate pumping cooling effect will cause lower anchoring force of the sealing elements. 3. Design concept & workover method; i.e., thorough simulation and discussion on combined technology between Overshot BHA and Swellable Elastomer Packer (SEPs) modified for inward swelling and new tubing latch-on method. These applications of workover scenario include condemn or damaged of the top subsurface tool (i.e. Surface Control Subsurface Safety Valve SCSSSV and Side Pocket Mandrel SPM). With this new technology – Overshot Inverted Swellpacker, same result with lower operation margin cost can be achieved. This paper describes the technical challenges and discusses resulting design methodology based on modeling (downhole parameters, anchoring forces, thermal contraction measurements, tool workover simulation and etc.) that have been developed to resolve these issues. This design methodology is not limited to only workover but also applicable to any scenario with dynamic loads on SEP applications such as in high rate injection wells, etc..
format Final Year Project
author Adnan bin Hanapai, Adnan
author_facet Adnan bin Hanapai, Adnan
author_sort Adnan bin Hanapai, Adnan
title Design Methodology of Overshot Inverted Swellable Elastomer Packer
title_short Design Methodology of Overshot Inverted Swellable Elastomer Packer
title_full Design Methodology of Overshot Inverted Swellable Elastomer Packer
title_fullStr Design Methodology of Overshot Inverted Swellable Elastomer Packer
title_full_unstemmed Design Methodology of Overshot Inverted Swellable Elastomer Packer
title_sort design methodology of overshot inverted swellable elastomer packer
publisher Universiti Teknologi Petronas
publishDate 2012
url http://utpedia.utp.edu.my/5739/1/Dissertation%20Report%20Adnan%20bin%20Hanapai.pdf
http://utpedia.utp.edu.my/5739/
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score 13.188404