Ajuste fino de correlaciones PVT para algunos crudos colombianos
The accurate estimation of reservoir fluid properties as a function of temperature and pressure depicts a key step in the procedure of developing a correct well flow model. The strictest model currently applied uses the Equations of State (EOS), by a detailed description of the fluid composition and...
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Universidad Industrial de Santander
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doaj-95fc52e1f68d4b46b6bd0843ba84c8322020-11-24T21:56:02ZspaUniversidad Industrial de SantanderRevista Fuentes El Reventón Energético1657-65272145-85022017-12-011525769https://doi.org/10.18273/revfue.v15n2-2017005Ajuste fino de correlaciones PVT para algunos crudos colombianosDUBAN FABIAN GARCIA NAVAS0Jorge Andrés Prada Mejía1Juan Pablo Osorio Suárez2UNIVERSIDAD DE ANTIOQUIAECOPETROL S. A.ECOPETROL S. A.The accurate estimation of reservoir fluid properties as a function of temperature and pressure depicts a key step in the procedure of developing a correct well flow model. The strictest model currently applied uses the Equations of State (EOS), by a detailed description of the fluid composition and assigning certain properties for each component. One generalized approach so called Black-Oil model considers the reservoir fluid as mixture of three phases: water, oil and gas, which generally regards only the dissolution of gas in water and oil, but the liquids are immiscible. Both approaches use adjusting of experimental PVT tests to mathematical expressions. Generally, model developing effort is related to the purpose of the fluid model and production mechanism, nevertheless in bottom and surface well level cases (not for reservoir level), the estimation is simplified using empirical correlations based on Black-Oil model which have been widely used and several authors develop them. These correlations lack in extrapolated conditions. In this work, the results of fine tuning methodology through different correlations optimization to PVT properties of four Colombian crude oils (Castilla and Chichimene as heavy and extra-heavy oils, and other more lighter crudes such as Apiay and Yariguí), whose API gravities are between 7 to 30°. Experimental PVT data test and other conditions such as well surface data and expected performance are used to obtain expressions which achieve good representation of fluid properties in typical well operational conditions. These expressions are useful for other fluids with comparable properties than the fluid used for adjusting, for instance well fluids of the same field.https://doi.org/10.18273/revfue.v15n2-2017005Correlation OptimizationViscosityDensityVolumetric Factor |
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DOAJ |
language |
Spanish |
format |
Article |
sources |
DOAJ |
author |
DUBAN FABIAN GARCIA NAVAS Jorge Andrés Prada Mejía Juan Pablo Osorio Suárez |
spellingShingle |
DUBAN FABIAN GARCIA NAVAS Jorge Andrés Prada Mejía Juan Pablo Osorio Suárez Ajuste fino de correlaciones PVT para algunos crudos colombianos Revista Fuentes El Reventón Energético Correlation Optimization Viscosity Density Volumetric Factor |
author_facet |
DUBAN FABIAN GARCIA NAVAS Jorge Andrés Prada Mejía Juan Pablo Osorio Suárez |
author_sort |
DUBAN FABIAN GARCIA NAVAS |
title |
Ajuste fino de correlaciones PVT para algunos crudos colombianos |
title_short |
Ajuste fino de correlaciones PVT para algunos crudos colombianos |
title_full |
Ajuste fino de correlaciones PVT para algunos crudos colombianos |
title_fullStr |
Ajuste fino de correlaciones PVT para algunos crudos colombianos |
title_full_unstemmed |
Ajuste fino de correlaciones PVT para algunos crudos colombianos |
title_sort |
ajuste fino de correlaciones pvt para algunos crudos colombianos |
publisher |
Universidad Industrial de Santander |
series |
Revista Fuentes El Reventón Energético |
issn |
1657-6527 2145-8502 |
publishDate |
2017-12-01 |
description |
The accurate estimation of reservoir fluid properties as a function of temperature and pressure depicts a key step in the procedure of developing a correct well flow model. The strictest model currently applied uses the Equations of State (EOS), by a detailed description of the fluid composition and assigning certain properties for each component. One generalized approach so called Black-Oil model considers the reservoir fluid as mixture of three phases: water, oil and gas, which generally regards only the dissolution of gas in water and oil, but the liquids are immiscible. Both approaches use adjusting of experimental PVT tests
to mathematical expressions. Generally, model developing effort is related to the purpose of the fluid model and production mechanism, nevertheless in bottom and surface well level cases (not for reservoir level), the estimation is simplified using empirical correlations based on Black-Oil model which have been widely used and several authors develop them. These
correlations lack in extrapolated conditions. In this work, the results of fine tuning methodology through different correlations optimization to PVT properties of four Colombian crude oils (Castilla and Chichimene as heavy and extra-heavy oils, and other more lighter crudes such as Apiay and Yariguí), whose API gravities are between 7 to 30°. Experimental PVT data test and other conditions such as well surface data and expected performance are used to obtain expressions which achieve good representation of fluid properties in typical well operational conditions. These expressions are useful for other fluids with comparable properties than the fluid used for adjusting, for instance well fluids of the same field. |
topic |
Correlation Optimization Viscosity Density Volumetric Factor |
url |
https://doi.org/10.18273/revfue.v15n2-2017005 |
work_keys_str_mv |
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