Effect of Fracture Spacing on VAPEX Performance in Heavy Oil Fracture Systems

The vapor extraction (VAPEX) process, a solvent-based enhanced oil recovery process has been found promising for some heavy oil reservoirs. In this work, the VAPEX process is studied using a compositional simulator on a number of single-block and multiple block fractured systems. PVT data of one of...

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Main Authors: Reza Azin, Riyaz Kharrat, Cyrus Ghotbi, Shapour Vossoughi
Format: Article
Language:English
Published: Iranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECR 2008-03-01
Series:Iranian Journal of Chemistry & Chemical Engineering
Subjects:
Online Access:http://www.ijcce.ac.ir/article_7010_4320b02fb5a470c85abdb14da4f692ac.pdf
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author Reza Azin
Riyaz Kharrat
Cyrus Ghotbi
Shapour Vossoughi
author_facet Reza Azin
Riyaz Kharrat
Cyrus Ghotbi
Shapour Vossoughi
author_sort Reza Azin
collection DOAJ
description The vapor extraction (VAPEX) process, a solvent-based enhanced oil recovery process has been found promising for some heavy oil reservoirs. In this work, the VAPEX process is studied using a compositional simulator on a number of single-block and multiple block fractured systems. PVT data of one of an Iranian heavy oil reservoir are used to tune the equation of state. Effects of fracture spacing on the performance of process were studied. It was found that the fracture network enhances the VAPEX process in low-permeability systems by increasing the contact area between solvent and oil contained in the matrix blocks. Also, the fracture network reduced the instabilities in the system pressure and damped pressure surges in the system during the VAPEX process. In addition, results showed that solvent traverse between fracture network delayed the onset of solvent breakthrough and provided more residence time for the solvent to be in contact with heavy oil. In other part, effect of well location on the performance of process was studied. It was found that the oil production decreased as the well spacing increased. When the injection and production wells were far from each other, the oil production was governed by displacement for quite a long time rather than the gravity drainage enhanced by the VAPEX process. Also, improper location of the injection and production wells may results in the shortcut between injector and producer, which would lead to early solvent breakthrough and increased gas production through the system. The well location is a critical issue when applying the VAPEX process in fractured systems.
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spelling doaj.art-9aa8e1ab93984690a0600a268a4389342022-12-22T01:09:36ZengIranian Institute of Research and Development in Chemical Industries (IRDCI)-ACECRIranian Journal of Chemistry & Chemical Engineering1021-99861021-99862008-03-0127135457010Effect of Fracture Spacing on VAPEX Performance in Heavy Oil Fracture SystemsReza Azin0Riyaz Kharrat1Cyrus Ghotbi2Shapour Vossoughi3Department of Chemical Engineering, Persian Gulf University, Bushehr 75169, I.R. IRANPetroleum University of Technology, Petroleum Research Center, Tehran, I.R. IRANDepartment of Chemical and Petroleum Engineering, Sharif University of Technology, Tehran, I.R. IRANDepartment of Chemical and Petroleum Engineering, Kansas University, KS, USAThe vapor extraction (VAPEX) process, a solvent-based enhanced oil recovery process has been found promising for some heavy oil reservoirs. In this work, the VAPEX process is studied using a compositional simulator on a number of single-block and multiple block fractured systems. PVT data of one of an Iranian heavy oil reservoir are used to tune the equation of state. Effects of fracture spacing on the performance of process were studied. It was found that the fracture network enhances the VAPEX process in low-permeability systems by increasing the contact area between solvent and oil contained in the matrix blocks. Also, the fracture network reduced the instabilities in the system pressure and damped pressure surges in the system during the VAPEX process. In addition, results showed that solvent traverse between fracture network delayed the onset of solvent breakthrough and provided more residence time for the solvent to be in contact with heavy oil. In other part, effect of well location on the performance of process was studied. It was found that the oil production decreased as the well spacing increased. When the injection and production wells were far from each other, the oil production was governed by displacement for quite a long time rather than the gravity drainage enhanced by the VAPEX process. Also, improper location of the injection and production wells may results in the shortcut between injector and producer, which would lead to early solvent breakthrough and increased gas production through the system. The well location is a critical issue when applying the VAPEX process in fractured systems.http://www.ijcce.ac.ir/article_7010_4320b02fb5a470c85abdb14da4f692ac.pdfvapexheavy oilfractured reservoirwell spacingfracture network
spellingShingle Reza Azin
Riyaz Kharrat
Cyrus Ghotbi
Shapour Vossoughi
Effect of Fracture Spacing on VAPEX Performance in Heavy Oil Fracture Systems
Iranian Journal of Chemistry & Chemical Engineering
vapex
heavy oil
fractured reservoir
well spacing
fracture network
title Effect of Fracture Spacing on VAPEX Performance in Heavy Oil Fracture Systems
title_full Effect of Fracture Spacing on VAPEX Performance in Heavy Oil Fracture Systems
title_fullStr Effect of Fracture Spacing on VAPEX Performance in Heavy Oil Fracture Systems
title_full_unstemmed Effect of Fracture Spacing on VAPEX Performance in Heavy Oil Fracture Systems
title_short Effect of Fracture Spacing on VAPEX Performance in Heavy Oil Fracture Systems
title_sort effect of fracture spacing on vapex performance in heavy oil fracture systems
topic vapex
heavy oil
fractured reservoir
well spacing
fracture network
url http://www.ijcce.ac.ir/article_7010_4320b02fb5a470c85abdb14da4f692ac.pdf
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AT shapourvossoughi effectoffracturespacingonvapexperformanceinheavyoilfracturesystems