Residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies application
The displacement factor is important information when it is necessary to evaluate oil production dynamics and the prospects of development intensification and oil recovery enhancing methods, including nanotechnological methods. However, up to date there are no reliable oil-field methods to predict t...
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Online Access: | http://nanobuild.ru/en_EN/journal/Nanobuild-5-2017/116-133.pdf |
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doaj-9a10e01135c54911844071db155da24f2021-04-02T21:24:27ZengOOO "CNT «NanoStroitelstvo»Нанотехнологии в строительстве2075-85452017-10-019511613310.15828/2075-8545-2017-9-5-116-133Residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies applicationAKHMETOV Rasul Tukhbatullovich0ANDREEV Anton Vadimovich1MUKHAMETSHIN Vyacheslav Vyacheslavovich2Ph.D. in Engineering, Professor, Deputy Head of the Department of «Oil and Gas Field Exploration and Development», Oktyabrsky Branch of Ufa State Petroleum Technological University, vsh@of.ugntu.ru;Ph.D. in Engineering, Associate Professor at the Department of «Oil and Gas Field Exploration and Development», Oktyabrsky Branch of Ufa State Petroleum Technological University, Ph.D. in Engineering, Associate Professor at the Department of «Oil and Gas-And-Oil Field Development and Operation», Ufa State Petroleum Technological UniversityThe displacement factor is important information when it is necessary to evaluate oil production dynamics and the prospects of development intensification and oil recovery enhancing methods, including nanotechnological methods. However, up to date there are no reliable oil-field methods to predict this parameter in situ well, under conditions of the natural reservoirs occurrence, and that causes this important parameter not to be taken into account when the impact on the bottomhole formation zone effectiveness is evaluated. In this paper the authors propose a methodology for prediction of the displacement factor that employs field geophysics data and that makes it possible to estimate this parameter in each geological cross-section both in the section and in the deposit area. The method is based on the use of two complex parameters characterizing the filtration properties and the productive formation hydrophilicity (hydrophobicity) degree. The both complex parameters are easily determined by the standard well logging complex data.At present the technologies that use solutions containing SiO2 nanoparticles are becoming more and more popular in oil production intensification and enhanced oil recovery process. The proposed calculation method for residual oil saturation and displacement coefficient can be used to obtain the reference values of the corresponding parameters when the efficiency of oil production intensification and enhanced oil recovery methods including nanotechnological ones is evaluated.http://nanobuild.ru/en_EN/journal/Nanobuild-5-2017/116-133.pdfresidual oil saturationdisplacement factorwettabilitynanotechnologies |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
AKHMETOV Rasul Tukhbatullovich ANDREEV Anton Vadimovich MUKHAMETSHIN Vyacheslav Vyacheslavovich |
spellingShingle |
AKHMETOV Rasul Tukhbatullovich ANDREEV Anton Vadimovich MUKHAMETSHIN Vyacheslav Vyacheslavovich Residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies application Нанотехнологии в строительстве residual oil saturation displacement factor wettability nanotechnologies |
author_facet |
AKHMETOV Rasul Tukhbatullovich ANDREEV Anton Vadimovich MUKHAMETSHIN Vyacheslav Vyacheslavovich |
author_sort |
AKHMETOV Rasul Tukhbatullovich |
title |
Residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies application |
title_short |
Residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies application |
title_full |
Residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies application |
title_fullStr |
Residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies application |
title_full_unstemmed |
Residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies application |
title_sort |
residual oil saturation and the displacement factor prediction methodology based on geophysical studies data to evaluate efficiency of nanotechnologies application |
publisher |
OOO "CNT «NanoStroitelstvo» |
series |
Нанотехнологии в строительстве |
issn |
2075-8545 |
publishDate |
2017-10-01 |
description |
The displacement factor is important information when it is necessary to evaluate oil production dynamics and the prospects of development intensification and oil recovery enhancing methods, including nanotechnological methods. However, up to date there are no reliable oil-field methods to predict this parameter in situ well, under conditions of the natural reservoirs occurrence, and that causes this important parameter not to be taken into account when the impact on the bottomhole formation zone effectiveness is evaluated. In this paper the authors propose a methodology for prediction of the displacement factor that employs field geophysics data and that makes it possible to
estimate this parameter in each geological cross-section both in the section and in the deposit area.
The method is based on the use of two complex parameters characterizing the filtration properties and the productive formation hydrophilicity (hydrophobicity) degree. The both complex parameters are easily determined by the standard well logging complex data.At present the technologies that use solutions containing SiO2 nanoparticles are becoming more and more popular in oil production intensification and enhanced oil recovery process.
The proposed calculation method for residual oil saturation and displacement coefficient can be used to obtain the reference values of the corresponding parameters when the efficiency of oil production intensification and enhanced oil recovery methods including nanotechnological ones is evaluated. |
topic |
residual oil saturation displacement factor wettability nanotechnologies |
url |
http://nanobuild.ru/en_EN/journal/Nanobuild-5-2017/116-133.pdf |
work_keys_str_mv |
AT akhmetovrasultukhbatullovich residualoilsaturationandthedisplacementfactorpredictionmethodologybasedongeophysicalstudiesdatatoevaluateefficiencyofnanotechnologiesapplication AT andreevantonvadimovich residualoilsaturationandthedisplacementfactorpredictionmethodologybasedongeophysicalstudiesdatatoevaluateefficiencyofnanotechnologiesapplication AT mukhametshinvyacheslavvyacheslavovich residualoilsaturationandthedisplacementfactorpredictionmethodologybasedongeophysicalstudiesdatatoevaluateefficiencyofnanotechnologiesapplication |
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