Cyclic confining pressure and rock permeability: Mechanical compaction or fines migration

The apparent rocks permeability, measured under cyclic loading, tends to constantly decrease with each subsequent loading/unloading cycle, the main reason for this, the researchers consider irreversible deformations. However, this understanding is not complete, as attention is not paid to the method...

Full description

Bibliographic Details
Main Authors: Evgenii Vasilevich Kozhevnikov, Mikhail Sergeevich Turbakov, Evgenii Pavlovich Riabokon, Evgenii Aleksandrovich Gladkikh, Vladimir Valerevich Poplygin
Format: Article
Language:English
Published: Elsevier 2023-11-01
Series:Heliyon
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2405844023088084
_version_ 1797429821304733696
author Evgenii Vasilevich Kozhevnikov
Mikhail Sergeevich Turbakov
Evgenii Pavlovich Riabokon
Evgenii Aleksandrovich Gladkikh
Vladimir Valerevich Poplygin
author_facet Evgenii Vasilevich Kozhevnikov
Mikhail Sergeevich Turbakov
Evgenii Pavlovich Riabokon
Evgenii Aleksandrovich Gladkikh
Vladimir Valerevich Poplygin
author_sort Evgenii Vasilevich Kozhevnikov
collection DOAJ
description The apparent rocks permeability, measured under cyclic loading, tends to constantly decrease with each subsequent loading/unloading cycle, the main reason for this, the researchers consider irreversible deformations. However, this understanding is not complete, as attention is not paid to the method of determining the permeability. Under cyclic loading, permeability is measured by fluid flow, which is able to carry colloids and they can clog pore throats and reduce permeability, but this is not taken into account in the study of porous rocks. Colloidal migration is also not taken into account in routine core tests, although colloids can significantly reduce the apparent permeability of rocks during migration. Also it is impossible to determine exactly which of the factors (mechanical compaction or colloid migration) contributed to the change in apparent permeability. The purpose of this research is to provide experimental evidence that under cyclic loading, permeability decreases not only due to mechanical compaction, but also due to colloid migration within the porous medium. For this task, a methodology has been developed, the feature of which is that between loading/unloading cycles, the core is blowning with a large pressure gradient. It has been established that under cyclic loading, the apparent permeability of rock samples changes as a result of colloid migration up to 20 %. The dynamics of permeability becomes unpredictable and weakly depends on the confining pressure when changing the direction and regime of the gas flow. At the end of the multi-cycle confining pressure test, the apparent permeability of 3 out of four core samples, despite the decrease during injection, recovered to the initial value which also confirms that the apparent permeability has affected by colloid migration. A mechanism for changing the apparent permeability during gas injection and cyclic confining pressure is proposed. The outcomes indicate that colloid migration should be taken into account during core tests not only in cyclic loading but also in routine coreflooding tests.
first_indexed 2024-03-09T09:18:42Z
format Article
id doaj.art-3f68e65439eb4f989c7d01aecc38527a
institution Directory Open Access Journal
issn 2405-8440
language English
last_indexed 2024-03-09T09:18:42Z
publishDate 2023-11-01
publisher Elsevier
record_format Article
series Heliyon
spelling doaj.art-3f68e65439eb4f989c7d01aecc38527a2023-12-02T07:03:19ZengElsevierHeliyon2405-84402023-11-01911e21600Cyclic confining pressure and rock permeability: Mechanical compaction or fines migrationEvgenii Vasilevich Kozhevnikov0Mikhail Sergeevich Turbakov1Evgenii Pavlovich Riabokon2Evgenii Aleksandrovich Gladkikh3Vladimir Valerevich Poplygin4Department of Oil and Gas Technologies, Perm National Research Polytechnic University, Perm, Russia; Corresponding author.Department of Oil and Gas Technologies, Perm National Research Polytechnic University, Perm, RussiaDepartment of Oil and Gas Technologies, Perm National Research Polytechnic University, Perm, RussiaDepartment of Oil and Gas Technologies, Perm National Research Polytechnic University, Perm, RussiaDean of International Students Faculty, Perm National Research Polytechnic University, Perm, RussiaThe apparent rocks permeability, measured under cyclic loading, tends to constantly decrease with each subsequent loading/unloading cycle, the main reason for this, the researchers consider irreversible deformations. However, this understanding is not complete, as attention is not paid to the method of determining the permeability. Under cyclic loading, permeability is measured by fluid flow, which is able to carry colloids and they can clog pore throats and reduce permeability, but this is not taken into account in the study of porous rocks. Colloidal migration is also not taken into account in routine core tests, although colloids can significantly reduce the apparent permeability of rocks during migration. Also it is impossible to determine exactly which of the factors (mechanical compaction or colloid migration) contributed to the change in apparent permeability. The purpose of this research is to provide experimental evidence that under cyclic loading, permeability decreases not only due to mechanical compaction, but also due to colloid migration within the porous medium. For this task, a methodology has been developed, the feature of which is that between loading/unloading cycles, the core is blowning with a large pressure gradient. It has been established that under cyclic loading, the apparent permeability of rock samples changes as a result of colloid migration up to 20 %. The dynamics of permeability becomes unpredictable and weakly depends on the confining pressure when changing the direction and regime of the gas flow. At the end of the multi-cycle confining pressure test, the apparent permeability of 3 out of four core samples, despite the decrease during injection, recovered to the initial value which also confirms that the apparent permeability has affected by colloid migration. A mechanism for changing the apparent permeability during gas injection and cyclic confining pressure is proposed. The outcomes indicate that colloid migration should be taken into account during core tests not only in cyclic loading but also in routine coreflooding tests.http://www.sciencedirect.com/science/article/pii/S2405844023088084PermeabilityConfinig pressureCorefloodingColloid migrationCarbonate rock
spellingShingle Evgenii Vasilevich Kozhevnikov
Mikhail Sergeevich Turbakov
Evgenii Pavlovich Riabokon
Evgenii Aleksandrovich Gladkikh
Vladimir Valerevich Poplygin
Cyclic confining pressure and rock permeability: Mechanical compaction or fines migration
Heliyon
Permeability
Confinig pressure
Coreflooding
Colloid migration
Carbonate rock
title Cyclic confining pressure and rock permeability: Mechanical compaction or fines migration
title_full Cyclic confining pressure and rock permeability: Mechanical compaction or fines migration
title_fullStr Cyclic confining pressure and rock permeability: Mechanical compaction or fines migration
title_full_unstemmed Cyclic confining pressure and rock permeability: Mechanical compaction or fines migration
title_short Cyclic confining pressure and rock permeability: Mechanical compaction or fines migration
title_sort cyclic confining pressure and rock permeability mechanical compaction or fines migration
topic Permeability
Confinig pressure
Coreflooding
Colloid migration
Carbonate rock
url http://www.sciencedirect.com/science/article/pii/S2405844023088084
work_keys_str_mv AT evgeniivasilevichkozhevnikov cyclicconfiningpressureandrockpermeabilitymechanicalcompactionorfinesmigration
AT mikhailsergeevichturbakov cyclicconfiningpressureandrockpermeabilitymechanicalcompactionorfinesmigration
AT evgeniipavlovichriabokon cyclicconfiningpressureandrockpermeabilitymechanicalcompactionorfinesmigration
AT evgeniialeksandrovichgladkikh cyclicconfiningpressureandrockpermeabilitymechanicalcompactionorfinesmigration
AT vladimirvalerevichpoplygin cyclicconfiningpressureandrockpermeabilitymechanicalcompactionorfinesmigration