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A New IOR Method for Mature Waterflooding Reservoirs: 'Sweep Control Technology'

机译:成熟的水库水库新的IOR方法:“扫描控制技术”

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For improving the recovery of water flooding heterogeneous oil fields, the classical conformance control method is to enlarge the swept volume as far as possible, usually by fine layering, profile control and water shutoff, and fracturing and acidizing, etc. However, with watercut rising, the remaining oil distributes in deep reservoirs, making the classical methods less effective. “Sweep Control Technology (SCT)”, a new IOR method, is put forward. The whole production-injection flowing field is taken as the studying target. The waterflooding effect impacting factors were classified into three levels: large-scale macroscopic heterogeneity, middle-scale mesoscopic heterogeneity and pore-scale microscopic heterogeneity. Based on the impact of the three levels of heterogeneity on sweep efficiency, we developed new corresponding SCT materials. For large-scale heterogeneity, we put the materials in accurate place to effectively inhibit water flow prevailing channels. For the middle and small scale heterogeneity, the water flow is diverted to achieve effective sweep control by means of effective material migration. So that we can realize complete adjustment and control of the whole flowing field to achieve efficient remaining oil displace- ment, and to improve the recovery of water flooding phase. The research and experiments in laboratory and field have proved the advancement of the method.
机译:用于提高水驱异构油田回收,经典的一致性控制的方法是通常由细分层,轮廓控制和堵水和压裂酸化等放大扫过容积尽可能,然而,随着含水率上升,剩下的油在深水库中分布,使古典方法效率较低。 “扫描控制技术(SCT)”,提出了一种新的IOR方法。整个生产注射流场被视为研究目标。影响因素注水效果分为三个层次:大型宏观非均质性,中等规模的中观异质性和孔隙尺度的微观异质性。基于三级异质性对扫描效率的影响,我们开发了新的相应SCT材料。对于大规模的异质性,我们将材料放在准确的地方,以有效地抑制水流普遍的通道。对于中间和小规模异质性,通过有效的材料迁移转移水流以实现有效的扫描控制。这样我们就可以实现对整个流场的全面调整和控制,以实现高效的剩余油displace-包换,并提高水驱阶段的恢复。实验室和现场的研究和实验证明了该方法的进步。

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