Wetting behavior of selected crude oil/brine/rock systems. Topical report, March 1, 1995--March 31, 1996

Previous studies of crude oil/brine/rock (COBR) and related ensembles showed that wettability and its effect on oil recovery depend on numerous complex interactions. In the present work, the wettability of COBR ensembles prepared using Prudhoe Bay crude oil, a synthetic formation brine, and Berea Sa...

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Main Authors: Zhou, X., Morrow, N.R., Ma, S.
Language:unknown
Published: 2009
Subjects:
Online Access:http://www.osti.gov/servlets/purl/568991
https://www.osti.gov/biblio/568991
https://doi.org/10.2172/568991
id ftosti:oai:osti.gov:568991
record_format openpolar
spelling ftosti:oai:osti.gov:568991 2023-07-30T04:06:29+02:00 Wetting behavior of selected crude oil/brine/rock systems. Topical report, March 1, 1995--March 31, 1996 Zhou, X. Morrow, N.R. Ma, S. 2009-12-10 application/pdf http://www.osti.gov/servlets/purl/568991 https://www.osti.gov/biblio/568991 https://doi.org/10.2172/568991 unknown http://www.osti.gov/servlets/purl/568991 https://www.osti.gov/biblio/568991 https://doi.org/10.2172/568991 doi:10.2172/568991 02 PETROLEUM RESERVOIR ROCK WETTABILITY WATERFLOODING PROGRESS REPORT SANDSTONES BRINES PETROLEUM ROCK-FLUID INTERACTIONS AGE DEPENDENCE WATER SATURATION ENHANCED RECOVERY EXPERIMENTAL DATA 2009 ftosti https://doi.org/10.2172/568991 2023-07-11T08:35:04Z Previous studies of crude oil/brine/rock (COBR) and related ensembles showed that wettability and its effect on oil recovery depend on numerous complex interactions. In the present work, the wettability of COBR ensembles prepared using Prudhoe Bay crude oil, a synthetic formation brine, and Berea Sandstone was varied by systematic change in initial water saturation and length of aging time at reservoir temperature (88 C). All displacement tests were run at ambient temperature. Various degrees of water wetness were achieved and quantified by a modified Amott wettability index to water, the relative pseudo work of imbibition, and a newly defined apparent advancing dynamic contact angle. Pairs of spontaneous imbibition (oil recovery by spontaneous imbibition of water) and waterflood (oil recovery vs. pore volumes of water injected) curves were measured for each of the induced wetting states. Several trends were observed. Imbibition rate, and hence water wetness, decreased with increase in aging time and with decrease in initial water saturation. Breakthrough recoveries and final oil recovery by waterflooding increased with decrease in water wetness. Correlations between water wetness and oil recovery by waterflooding and spontaneous imbibition are presented. Other/Unknown Material Prudhoe Bay SciTec Connect (Office of Scientific and Technical Information - OSTI, U.S. Department of Energy)
institution Open Polar
collection SciTec Connect (Office of Scientific and Technical Information - OSTI, U.S. Department of Energy)
op_collection_id ftosti
language unknown
topic 02 PETROLEUM
RESERVOIR ROCK
WETTABILITY
WATERFLOODING
PROGRESS REPORT
SANDSTONES
BRINES
PETROLEUM
ROCK-FLUID INTERACTIONS
AGE DEPENDENCE
WATER SATURATION
ENHANCED RECOVERY
EXPERIMENTAL DATA
spellingShingle 02 PETROLEUM
RESERVOIR ROCK
WETTABILITY
WATERFLOODING
PROGRESS REPORT
SANDSTONES
BRINES
PETROLEUM
ROCK-FLUID INTERACTIONS
AGE DEPENDENCE
WATER SATURATION
ENHANCED RECOVERY
EXPERIMENTAL DATA
Zhou, X.
Morrow, N.R.
Ma, S.
Wetting behavior of selected crude oil/brine/rock systems. Topical report, March 1, 1995--March 31, 1996
topic_facet 02 PETROLEUM
RESERVOIR ROCK
WETTABILITY
WATERFLOODING
PROGRESS REPORT
SANDSTONES
BRINES
PETROLEUM
ROCK-FLUID INTERACTIONS
AGE DEPENDENCE
WATER SATURATION
ENHANCED RECOVERY
EXPERIMENTAL DATA
description Previous studies of crude oil/brine/rock (COBR) and related ensembles showed that wettability and its effect on oil recovery depend on numerous complex interactions. In the present work, the wettability of COBR ensembles prepared using Prudhoe Bay crude oil, a synthetic formation brine, and Berea Sandstone was varied by systematic change in initial water saturation and length of aging time at reservoir temperature (88 C). All displacement tests were run at ambient temperature. Various degrees of water wetness were achieved and quantified by a modified Amott wettability index to water, the relative pseudo work of imbibition, and a newly defined apparent advancing dynamic contact angle. Pairs of spontaneous imbibition (oil recovery by spontaneous imbibition of water) and waterflood (oil recovery vs. pore volumes of water injected) curves were measured for each of the induced wetting states. Several trends were observed. Imbibition rate, and hence water wetness, decreased with increase in aging time and with decrease in initial water saturation. Breakthrough recoveries and final oil recovery by waterflooding increased with decrease in water wetness. Correlations between water wetness and oil recovery by waterflooding and spontaneous imbibition are presented.
author Zhou, X.
Morrow, N.R.
Ma, S.
author_facet Zhou, X.
Morrow, N.R.
Ma, S.
author_sort Zhou, X.
title Wetting behavior of selected crude oil/brine/rock systems. Topical report, March 1, 1995--March 31, 1996
title_short Wetting behavior of selected crude oil/brine/rock systems. Topical report, March 1, 1995--March 31, 1996
title_full Wetting behavior of selected crude oil/brine/rock systems. Topical report, March 1, 1995--March 31, 1996
title_fullStr Wetting behavior of selected crude oil/brine/rock systems. Topical report, March 1, 1995--March 31, 1996
title_full_unstemmed Wetting behavior of selected crude oil/brine/rock systems. Topical report, March 1, 1995--March 31, 1996
title_sort wetting behavior of selected crude oil/brine/rock systems. topical report, march 1, 1995--march 31, 1996
publishDate 2009
url http://www.osti.gov/servlets/purl/568991
https://www.osti.gov/biblio/568991
https://doi.org/10.2172/568991
genre Prudhoe Bay
genre_facet Prudhoe Bay
op_relation http://www.osti.gov/servlets/purl/568991
https://www.osti.gov/biblio/568991
https://doi.org/10.2172/568991
doi:10.2172/568991
op_doi https://doi.org/10.2172/568991
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