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Impact of Mechanical Degradation on Polymer Injectivity in Porous Media

机译:机械降解对多孔介质中聚合物注入性的影响

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摘要

Polymer flooding is an established enhanced oil recovery (EOR) method; still, many aspects of polymer flooding are not well understood. This study investigates the influence of mechanical degradation on flow properties of polymers in porous media. Mechanical degradation due to high shear forces may occur in the injection well and at the entrance to the porous media. The polymers that give high viscosity yields at a sustainable economic cost are typically large, MW > 10 MDa, and have wide molecular weight distributions. Both MW and the distributions are altered by mechanical degradation, leading to changes in the flow rheology of the polymer. The polymer solutions were subjected to different degrees of pre-shearing and pre-filtering before injected into Bentheimer outcrop sandstone cores. Rheology studies of injected and produced polymer solutions were performed and interpreted together with in situ rheology data. The core floods showed a predominant shear thickening behavior at high flow velocities, which is due to successive contraction/expansion flow in pores. When pre-sheared, shear thickening was reduced but with no significant reduction in in situ viscosity at lower flow rates. This may be explained by reduction in the extensional viscosity. Furthermore, the results show that successive degradation occurred which suggests that the assumption of the highest point of shear that determines mechanical degradation in a porous media does not hold for all field relevant conditions.
机译:聚合物驱是一种公认​​的提高采油率的方法。仍然,聚合物驱的许多方面还没有被很好地理解。这项研究调查了机械降解对多孔介质中聚合物流动性能的影响。由于高剪切力而导致的机械降解可能会在注入井中以及在多孔介质的入口处发生。以可持续的经济成本提供高粘度产量的聚合物通常很大,MW> 10 MDa,并且分子量分布较宽。分子量和分布都因机械降解而改变,从而导致聚合物的流变学改变。在注入Bentheimer露头砂岩岩心之前,先对聚合物溶液进行不同程度的预剪切和预过滤。进行了注入和生产的聚合物溶液的流变学研究,并与原位流变学数据一起进行了解释。岩心洪水在高流速下表现出主要的剪切增稠行为,这是由于孔隙中连续的收缩/膨胀流动所致。当进行预剪切时,剪切增厚降低,但在较低流速下原位粘度没有明显降低。这可以通过降低拉伸粘度来解释。此外,结果表明发生了连续降解,这表明确定多孔介质中机械降解的最高剪切点的假设并不适用于所有与现场相关的条件。

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