Transient Well Performance Modeling for Reservoir Pressure Determination

Continuous reservoir pressure data acquisition through intrusive well intervention has always been a challenge to the industry due to a combination of economic, operational and logistical constraints. This paper presents an alternative methodology wherein the reservoir pressure can be computed from...

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Main Authors: Hon, Vai Yee, Suzalina, Zainal, Ismail , Saaid
Format: Conference or Workshop Item
Published: 2010
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Online Access:http://eprints.utp.edu.my/5446/1/SPE_-_127850_-Cairo.pdf
http://eprints.utp.edu.my/5446/
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spelling my.utp.eprints.54462017-03-20T01:59:56Z Transient Well Performance Modeling for Reservoir Pressure Determination Hon, Vai Yee Suzalina, Zainal Ismail , Saaid QD Chemistry Continuous reservoir pressure data acquisition through intrusive well intervention has always been a challenge to the industry due to a combination of economic, operational and logistical constraints. This paper presents an alternative methodology wherein the reservoir pressure can be computed from the well’s steady-state flow properties and wellhead shut-in data using an advanced transient well algorithm. The key research element is the incorporation of mass transfer rate model into dynamic wellbore modeling for shut-in well. A mathematical workflow which incorporates the time dimension as inherited in the mass transfer theory is devised. This is a major advance on prior state-of-the-art models that assume instantaneous mass transfer upon equilibrium. This enhanced dynamic well model is able to simulate the fluid redistribution during well shut-in, by determining an accurate volume of each fluid phase at any cell in the well over time. Hence, the bottom-hole pressure over time can be calculated by adding the static head to the wellhead pressure. The bottom-hole near wellbore reservoir pressure is obtained when the well has reached equilibrium. The model also rigorously accounts for various transient behaviors of the reservoir fluids during shut-in including the reservoir fluid influx. A number of engineering concepts are evaluated and all the elements that become the foundation of this novel methodology are presented. A sample well is used to demonstrate the robustness of the model in simulating the hydrocarbon fluid redistribution during well shut-in. A better description of wellbore dynamic behavior is obtained, ensuring an improved accuracy in transient well performance modeling. This enhanced dynamic well model provides a vital tool for reservoir pressure determination, replacing subsurface data acquisition with surface data acquisition without well intervention. The model enables operating costs reduction associated with subsurface data acquisition, in addition to improve key data availability which will optimize production plans and recovery improvement opportunities. 2010-02-17 Conference or Workshop Item NonPeerReviewed application/pdf http://eprints.utp.edu.my/5446/1/SPE_-_127850_-Cairo.pdf Hon, Vai Yee and Suzalina, Zainal and Ismail , Saaid (2010) Transient Well Performance Modeling for Reservoir Pressure Determination. In: SPE North Africa Technical Conference and Exhibition , 14–17 February 2010, Cairo, Egypt . http://eprints.utp.edu.my/5446/
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/
topic QD Chemistry
spellingShingle QD Chemistry
Hon, Vai Yee
Suzalina, Zainal
Ismail , Saaid
Transient Well Performance Modeling for Reservoir Pressure Determination
description Continuous reservoir pressure data acquisition through intrusive well intervention has always been a challenge to the industry due to a combination of economic, operational and logistical constraints. This paper presents an alternative methodology wherein the reservoir pressure can be computed from the well’s steady-state flow properties and wellhead shut-in data using an advanced transient well algorithm. The key research element is the incorporation of mass transfer rate model into dynamic wellbore modeling for shut-in well. A mathematical workflow which incorporates the time dimension as inherited in the mass transfer theory is devised. This is a major advance on prior state-of-the-art models that assume instantaneous mass transfer upon equilibrium. This enhanced dynamic well model is able to simulate the fluid redistribution during well shut-in, by determining an accurate volume of each fluid phase at any cell in the well over time. Hence, the bottom-hole pressure over time can be calculated by adding the static head to the wellhead pressure. The bottom-hole near wellbore reservoir pressure is obtained when the well has reached equilibrium. The model also rigorously accounts for various transient behaviors of the reservoir fluids during shut-in including the reservoir fluid influx. A number of engineering concepts are evaluated and all the elements that become the foundation of this novel methodology are presented. A sample well is used to demonstrate the robustness of the model in simulating the hydrocarbon fluid redistribution during well shut-in. A better description of wellbore dynamic behavior is obtained, ensuring an improved accuracy in transient well performance modeling. This enhanced dynamic well model provides a vital tool for reservoir pressure determination, replacing subsurface data acquisition with surface data acquisition without well intervention. The model enables operating costs reduction associated with subsurface data acquisition, in addition to improve key data availability which will optimize production plans and recovery improvement opportunities.
format Conference or Workshop Item
author Hon, Vai Yee
Suzalina, Zainal
Ismail , Saaid
author_facet Hon, Vai Yee
Suzalina, Zainal
Ismail , Saaid
author_sort Hon, Vai Yee
title Transient Well Performance Modeling for Reservoir Pressure Determination
title_short Transient Well Performance Modeling for Reservoir Pressure Determination
title_full Transient Well Performance Modeling for Reservoir Pressure Determination
title_fullStr Transient Well Performance Modeling for Reservoir Pressure Determination
title_full_unstemmed Transient Well Performance Modeling for Reservoir Pressure Determination
title_sort transient well performance modeling for reservoir pressure determination
publishDate 2010
url http://eprints.utp.edu.my/5446/1/SPE_-_127850_-Cairo.pdf
http://eprints.utp.edu.my/5446/
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