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首页> 外文期刊>E3S Web of Conferences >The experimental investigation of the HPAM/phenolic resin deep profile system in fractured low-permeability reservoirs
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The experimental investigation of the HPAM/phenolic resin deep profile system in fractured low-permeability reservoirs

机译:HPAM /酚醛树脂深型系统在裂缝低渗透储层中的实验研究

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The problem of injected water channeling along fractures exists in the process of water injection in fractured low permeability reservoir, aimed at this problem, deep profile control technology applies to plug fractures to improve the recovery of low permeability reservoir. In this paper, partially hydrolyzed polyacrylamide (HPAM) is used as water-plugging/profile-modifying agent and phenolic resin as crosslinker agent. Several profile control systems are tested to find the one which is suitable for fractured low permeability reservoirs. The performances of profile control systems are evaluated, and effects of formation water salinity, that of shearing rate and that of temperature on the performance are studied. Finally, in order to study effects of this profile control system on displacing oil, flowability experiment and core displacement experiment are applied. It shows that with the increase of salinty of prepared water and the increase of the shearing rate, the viscosity of this system decreases. With the increase of temperature, the gelling time shortens, the viscosity increases, but the stability weekens. This kind of profile control system has a good effect on plugging fractures of low permeability cores. After water flooding, this kind of profile control system is injected into cores, the recovery ratio can increase 3.5%. So the profile control system composed of HPAM/ phenolic resin can apply to deep profile control in fractured low permeability reservoir to enhance oil recovery.
机译:沿着裂缝的注射水窜漏水的问题存在于碎屑低渗透储层的过程中,旨在解决这个问题,深型材控制技术适用于插头骨折以改善低渗透储层的恢复。在本文中,部分水解的聚丙烯酰胺(HPAM)用作液体堵塞/型材改性剂和酚醛树脂作为交联剂剂。测试了几种简档控制系统以找到适用于骨折低渗透储存器的系统。研究了轮廓控制系统的性能,并研究了地层水盐的影响,对剪切速率和温度对性能的影响。最后,为了研究这种轮廓控制系统对位移油的影响,应用了流动性实验和核心位移实验。目前据认为,随着制备水的沙洞和剪切速率的增加,该系统的粘度降低。随着温度的增加,胶凝时间缩短,粘度增加,但稳定性的每周。这种轮廓控制系统对堵塞低渗透性芯的骨折具有良好的效果。水浸后,这种型材控制系统注入核心,回收率可以增加3.5%。因此,由HPAM /酚醛树脂组成的轮廓控制系统可以适用于骨折低渗透储层中的深轮廓控制,以提高采油。

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