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首页> 外文期刊>Oil & gas science and technology >Mechanical Degradation Onset of Polyethylene Oxide Used as a Hydrosoluble Model Polymer for Enhanced Oil Recovery
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Mechanical Degradation Onset of Polyethylene Oxide Used as a Hydrosoluble Model Polymer for Enhanced Oil Recovery

机译:用作水溶性模型聚合物以提高采油率的聚环氧乙烷的机械降解开始

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Water soluble polymers such as polyacrylamide are used in polymer flooding, which is an advanced technique of Enhanced Oil Recovery (EOR). It aims at improving crude oil displacement in reservoir by pushing it with a viscous injected fluid. Polymer flood is challenged by mechanical degradation of long macromolecules during intense flows. Many studies reported that above a critical extensionai rate ε_c, polymer chains can break and lose their rheological properties. The molecular weight (M) dependence of ε_c for dilute solutions in laminar flows was shown to follow a power law: ε_c = M_w~(-k). An experimental study has been performed to investigate the onset of mechanical degradation in both laminar and turbulent flows and for both dilute and semi dilute polyethylene oxide aqueous solutions. It reveals that the exponent k strongly depends on the concentration and flow regimes and also on solvent quality. Results show that mechanical degradation mainly affects long chains, that it is favoured at high concentrations, under poor solvent conditions. They also evidence that the extensionai viscosity at low strain rates decreases to the same extent as shear viscosities due to mechanical degradation. However, the decrease of the extensionai viscous properties at high strain rates is much more pronounced.
机译:水溶性聚合物(如聚丙烯酰胺)用于聚合物驱,这是增强采油率(EOR)的一项先进技术。它的目的是通过注入粘性流体推动原油驱替。高强度流动过程中长高分子的机械降解对聚合物泛滥提出了挑战。许多研究报告说,超过临界伸长率ε_c,聚合物链会断裂并失去其流变特性。 ε_c对层流中稀溶液的分子量(M)依赖性显示遵循幂定律:ε_c= M_w〜(-k)。已经进行了实验研究以研究在层流和湍流中以及稀和半稀聚环氧乙烷水溶液中机械降解的开始。它表明指数k在很大程度上取决于浓度和流动方式以及溶剂质量。结果表明,机械降解主要影响长链,在恶劣的溶剂条件下,高浓度的降解尤为有利。他们还证明,由于机械降解,低应变速率下的拉伸粘度下降的程度与剪切粘度相同。然而,在高应变速率下拉伸粘性性能的降低更为明显。

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