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Gel performance in rheology and profile control under low-frequency vibration: coupling application of physical and chemical EOR techniques

机译:低频振动下流变和轮廓控制中的凝胶性能:物理和化学EOR技术的结合应用

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摘要

Flowing gel plugging and low-frequency vibration oil extraction technology have been widely applied in low-permeability formation. High probability of overlapping in action spheres of two technologies might lead to poor operating efficiency during gel injection. Study on flowing gel rheological properties under low-frequency vibration was essential, which was carried out indoor with viscosity measurement. Potential dynamic mechanisms were analyzed for the rheological variation. Under low-frequency vibration, gel rheological properties were found to be obviously influenced, with vibration delaying gel cross-linking in induction period, causing a two-stage gel viscosity change in acceleration period, and decreasing gel strength in stable period. Surface of gel system under vibration presented different fluctuating phenomenon from initial harmonic vibrating to heterogeneous fluctuating (droplet separation might appear) to final harmonic vibrating again. Dynamic displacement in unconsolidated sand pack revealed that low-frequency vibration during gel injection might be a measure to achieve deep profile control, with the gel injection depth increased by 65.8 % compared with the vibration-free sample. At last, suggestions for field test were given in the paper to achieve lower injection friction and better gel plugging efficiency.
机译:流动凝胶堵漏和低频振动采油技术已广泛应用于低渗透地层。两种技术在作用范围内重叠的可能性很高,可能会导致凝胶注射过程中的操作效率下降。低频振动下流动凝胶流变特性的研究是必不可少的,这是在室内用粘度测量法进行的。分析了流变学变化的潜在动力学机理。在低频振动下,发现凝胶流变性能受到明显影响,在诱导期振动会延迟凝胶交联,在加速期引起两阶段凝胶粘度变化,在稳定期降低凝胶强度。振动后的凝胶体系表面呈现出不同的波动现象,从最初的谐波振动到不均匀的波动(可能出现液滴分离)再到最终的谐波振动。在未固结砂土中的动态位移表明,凝胶注入过程中的低频振动可能是实现深度剖面控制的一种措施,与无振动的样品相比,凝胶注入深度增加了65.8%。最后,本文提出了现场测试的建议,以实现更低的注射摩擦和更好的凝胶堵塞效率。

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