Model predicts compositional grading of a reservoir in Iran

A study showed that an isothermal gravity-chemical equilibrium model can predict the compositional variation with depth for the Asmari carbonate reservoir in Marun field, Iran. The basis of the study was laboratory pressure-volume-temperature (PVT) reports on 15 appraisal wells. The study involved t...

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Published inThe Oil & gas journal Vol. 103; no. 43; pp. 57 - 59
Main Authors JAMSHIDNEZHAD, Mohammad, FARAZMAND, Mohammad
Format Magazine Article
LanguageEnglish
Published Tulsa, OK Pennwell 21.11.2005
Endeavor Business Media
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Abstract A study showed that an isothermal gravity-chemical equilibrium model can predict the compositional variation with depth for the Asmari carbonate reservoir in Marun field, Iran. The basis of the study was laboratory pressure-volume-temperature (PVT) reports on 15 appraisal wells. The study involved the calibration of the equation of state (EOS) for compositional simulation and established a means for predicting fluid properties for the entire area of the field. In the study, a three-parameter Peng-Robinson equation of state was used to match all laboratory PVT data from the Asmari reservoir. This step was followed by a regression technique with dynamic parameter selection for tuning the EOS. This study uses a balance of driving forces or flux equations to satisfy the condition of zero component net flux. In this reservoir, a temperature differences are small with respect to the absolute reservoir temperature, and one may expect that an equilibrium model will give an adequate fluid composition and properties description.
AbstractList A study showed that an isothermal gravity-chemical equilibrium model can predict the compositional variation with depth for the Asmari carbonate reservoir in Marun field, Iran. The basis of the study was laboratory pressure-volume-temperature (PVT) reports on 15 appraisal wells. The study involved the calibration of the equation of state (EOS) for compositional simulation and established a means for predicting fluid properties for the entire area of the field. In the study, a three-parameter Peng-Robinson equation of state was used to match all laboratory PVT data from the Asmari reservoir. This step was followed by a regression technique with dynamic parameter selection for tuning the EOS. This study uses a balance of driving forces or flux equations to satisfy the condition of zero component net flux. In this reservoir, a temperature differences are small with respect to the absolute reservoir temperature, and one may expect that an equilibrium model will give an adequate fluid composition and properties description.
Author JAMSHIDNEZHAD, Mohammad
FARAZMAND, Mohammad
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  organization: National Iranian South Oil Co, Ahwaz, Iran, Islamic Republic of
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SubjectTerms Applied sciences
Crude oil, natural gas and petroleum products
Energy
Enhanced oil recovery
Equilibrium
Exact sciences and technology
Fractured reservoirs
Fuels
Laboratories
Mathematical models
Molecular weight
Oil fields
Predictions
Reservoirs
Simulation
Statistical analysis
Studies
Temperature
Title Model predicts compositional grading of a reservoir in Iran
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