Mathematical Modeling of Steam Assisted Gravity Drainage
Математическое моделирование метода выдавливания с помощью пара (Steam Assisted Gravity Drainage)
2004-03-16
SCID: 54.1/aecvg37e
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asphaltene-dependent viscositygravity drainageheavy-oil reservoirsinverted triangle steam zonesteam assisted gravity drainage
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Abstract (AI)
Abstract A mathematical model for gravity drainage in heavy-oil reservoirs and tar sands during steam injection in linear geometry is proposed. The mathematical model is based on the experimental observations that the steam zone shape is an inverted triangle with the vertex fixed at the bottom production well. Both temperature and asphaltene content dependence of viscosity of the drained heavy oil is considered. The developed model has been validated using experimental data presented in the literature. The heavy oil production rate conforms well to previously published data covering a wide range of heavy oils and sands for gravity drainage.
Key Findings
1
A mathematical model for gravity drainage during steam injection in linear geometry is proposed.
2
Predicted heavy oil production rates agree well with previously published data across a wide range of heavy oils and sands for gravity drainage.
3
The developed model is validated against experimental data from the literature.
4
The model incorporates experimental observation that the steam zone shape is an inverted triangle with its vertex at the bottom production well.
5
Viscosity of drained heavy oil is modeled as dependent on both temperature and asphaltene content.
Research Object
Gravity drainage of heavy-oil reservoirs and tar sands during steam-assisted gravity drainage in linear geometry
Research Subject
Mathematical model of steam-assisted gravity drainage including inverted-triangle steam zone geometry, temperature- and asphaltene-dependent oil viscosity, and prediction/validation of heavy-oil production rate
Publication Details
Publication Date
2004-03-16
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