On the evaluation of steam assisted gravity drainage in naturally fractured oil reservoirs
Об оценке паровой гравитационной дренажной технологии в естественно трещиноватых нефтяных коллекторах
2016-01-28
SCID: 54.1/b2gx6tbj
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Steam Assisted Gravity Drainagefracture orientationfracture permeabilityfracture spacingnaturally fractured reservoirs
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Abstract (AI)
Steam Assisted Gravity Drainage (SAGD) as a successful enhanced oil recovery (EOR) process has been applied to extract heavy and extra heavy oils. Huge amount of global heavy oil resources exists in carbonate reservoirs which are mostly naturally fractured reservoirs. Unlike clastic reservoirs, few studies were carried out to determine the performance of SAGD in carbonate reservoirs. Even though SAGD is a highly promising technique, several uncertainties and unanswered questions still exist and they should be clarified for expansion of SAGD methods to world wide applications especially in naturally fractured reservoirs. In this communication, the effects of some operational and reservoir parameters on SAGD processes were investigated in a naturally fractured reservoir with oil wet rock using CMG-STARS thermal simulator. The purpose of this study was to investigate the role of fracture properties including fracture orientation, fracture spacing and fracture permeability on the SAGD performance in naturally fractured reservoirs. Moreover, one operational parameter was also studied; one new well configuration, staggered well pair was evaluated. Results indicated that fracture orientation influences steam expansion and oil production from the horizontal well pairs. It was also found that horizontal fractures have unfavorable effects on oil production, while vertical fractures increase the production rate for the horizontal well. Moreover, an increase in fracture spacing results in more oil production, because in higher fracture spacing model, steam will have more time to diffuse into matrices and heat up the entire reservoir. Furthermore, an increase in fracture permeability results in process enhancement and ultimate recovery improvement. Besides, diagonal change in the location of injection wells (staggered model) increases the recovery efficiency in long-term production plan.
Key Findings
1
A staggered (diagonally offset) well-pair configuration for injection wells increases recovery efficiency over long-term production.
2
Fracture orientation influences steam expansion and oil production from horizontal SAGD well pairs in naturally fractured, oil-wet carbonate reservoirs.
3
Higher fracture permeability enhances the SAGD process and improves ultimate oil recovery.
4
Horizontal fractures negatively affect oil production from horizontal wells, whereas vertical fractures increase horizontal-well production rate.
5
Increasing fracture spacing increases oil production because larger spacing allows more time for steam to diffuse into matrix and heat the reservoir.
Research Object
Steam Assisted Gravity Drainage (SAGD) process in naturally fractured carbonate oil reservoirs (oil-wet) modeled with horizontal well pairs
Research Subject
Impact of fracture properties (orientation, spacing, permeability) and a staggered well-pair operational configuration on SAGD performance metrics: steam expansion, oil production rate, and ultimate recovery
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2016-01-28
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References available in scid.ai4
Effects of Reservoir Heterogeneities on the Steam-Assisted Gravity-Drainage Process2008
Optimization of Steam Assisted Gravity Drainage in McMurray Reservoir2006
Application of the SAGD to an Iranian Carbonate Heavy-Oil Reservoir2006
Steam Heating of Fractured Formations Containing Heavy Oil: Basic Premises and a Single-Block Analytical Model1994