Effects of Lean Zones on Steam-Assisted Gravity Drainage Performance
Влияние обеднённых зон на эффективность добычи методом парового гравитационного вытеснения (SAGD)
2017-04-03
SCID: 54.1/f7hsnahz
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SAGDabove-injector (AI)cyclic steam stimulationhybrid CSS/SAGDinjection pressureleaky oil sandslean zonesmultiple-layer lean zonessingle-layer lean zonesteam-assisted gravity drainage
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Abstract (AI)
A thorough understanding of the effects of lean zones and the improvement of steam-assisted gravity drainage (SAGD) operations with such heterogeneities is critically important for reducing the disadvantages of lean zones. The numerical model shows: (1) SAGD is most influenced by the single-layer lean zone with the above-injector (AI) location; with the decrease of interval distance and increase of thickness and water saturation in lean zones, the detrimental effect of single-layer lean zones on SAGD performance increases; (2) with the increase of period and decrease of connate and initial water saturations in lean zones, the detrimental effect of multiple-layer lean zones on SAGD performance increases; (3) reducing the injection pressure properly improves SAGD performance in leaky oil sands. The field-scale study indicates: (1) well pair 1 is most affected by lean zones in the studied pad due to the widest distribution of lean zones above its injector, and a hybrid cyclic steam stimulation (CSS)/SAGD method is proposed to overcome the practical problem of a low injection pressure in this area; (2) simulation results prove that the hybrid CSS/SAGD method is better than the conventional SAGD method in leaky oil sands.
Key Findings
1
Field-scale: well pair 1 is most affected by lean zones due to the widest distribution of lean zones above its injector, prompting a hybrid cyclic steam stimulation (CSS)/SAGD method to address low injection pressure.
2
Multiple-layer lean zones increasingly harm SAGD performance when their period increases and their connate and initial water saturations decrease.
3
Proper reduction of injection pressure can improve SAGD performance in leaky oil sands.
4
Simulation shows the proposed hybrid CSS/SAGD method outperforms conventional SAGD in leaky oil sands.
5
Single-layer lean zones located above the injector (AI) most strongly impair SAGD performance, with greater impairment as interval distance decreases and lean-zone thickness and water saturation increase.
Research Object
Steam-assisted gravity drainage (SAGD) operations in oil sands containing lean zones
Research Subject
Effects of lean zones (single-layer and multiple-layer: position, thickness, interval distance, period, connate/initial water saturation) and injection pressure on SAGD performance and improvement via a hybrid cyclic steam stimulation (CSS)/SAGD method
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2017-04-03
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