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Gel Treatments for Reducing Channeling in Naturally Fractured Reservoirs

机译:减少天然裂缝性油藏窜水的凝胶处理

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This paper considers some of the reservoir variables that affect the severity of channeling and the potential of gel treatments for reducing channeling through naturally fractured reservoirs. We performed extensive tracer and gel placement studies using two different simulators. We show that gel treatments have the greatest potential when the conductivities of fractures that are aligned with direct flow between an injector-producer pair are at least 10 times the conductivity of off-trend fractures. Gel treatments also have their greatest potential in reservoirs with moderate to large fracture spacing. Produced tracer concentrations from interwell tracer studies can help identify reservoirs that are predisposed to successful gel applications. Our simulation studies also show how tracer transit times can be used to estimate the conductivity of the most direct fracture. The effectiveness of gel treatments should be insensitive to fracture spacing for fractures that are aligned with the direct flow direction. The effectiveness of gel treatments increases with increased fracture spacing for fractures that are not aligned with the direct flow direction.
机译:本文考虑了一些储层变量,这些变量会影响窜动的严重性以及凝胶处理减少通过天然裂缝性储层的窜动的潜力。我们使用两个不同的模拟器进行了广泛的示踪剂和凝胶放置研究。我们显示,当与注入器—生产器对之间的直流对齐的裂缝的电导率至少是非趋势裂缝的电导率的10倍时,凝胶处理具有最大的潜力。在裂缝间距中等到较大的储层中,凝胶处理也具有最大的潜力。从井间示踪剂研究中产生的示踪剂浓度可以帮助确定易于成功应用凝胶的储层。我们的模拟研究还表明,示踪剂的穿越时间可用于估算最直接裂缝的电导率。对于与直接流动方向对齐的裂缝,凝胶处理的有效性应该对裂缝间距不敏感。对于与直流方向不一致的裂缝,凝胶处理的有效性随着裂缝间距的增加而增加。

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