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首页> 外文期刊>Energies >Effects of Lean Zones on Steam-Assisted Gravity Drainage Performance
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Effects of Lean Zones on Steam-Assisted Gravity Drainage Performance

机译:倾斜区域对蒸汽辅助重力排水性能的影响

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摘要

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.
机译:充分理解贫油区的影响以及改进具有此类异质性的蒸汽辅助重力排水(SAGD)操作对于减少贫油区的缺点至关重要。数值模型表明:(1)SAGD受单层倾斜区的影响最大,且位于注入器上方(AI)。随着稀疏带间隔距离的减小,厚度和含水饱和度的增加,单层稀疏带对SAGD性能的不利影响增大。 (2)随着贫化带周期的增加和原生水饱和度的降低,多层贫化带对SAGD性能的不利影响增大; (3)适当降低注入压力可改善漏油砂中的SAGD性能。现场规模研究表明:(1)由于注入井上方倾斜区域的分布最广,井对1受研究垫层中倾斜区域的影响最大,因此提出了一种混合循环蒸汽增产(CSS)/ SAGD方法克服了该区域注射压力低的实际问题; (2)仿真结果证明,在泄漏油砂中,CSS / SAGD混合方法优于常规SAGD方法。

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