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Hydrodynamic Retention and Rheology of EOR Polymers in Porous Media

机译:多孔介质中EOR聚合物的流体动力保留和流变学

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Polymer retention caused by increase of hydrodynamic force acting upon polymer molecules was evaluated in this study. The results indicate this hydrodynamic retention is strongly flow rate dependent. In the low-flow region, the retention increases abruptly with increased flow rate. In contrast, in the high-flow region, the increase becomes much more gradual. Our results also demonstrate that this flow-induced retention is totally reversible (no incremental irreversible retention occurs), which is also confirmed by the constant residual resistance factors determined after 100 PV of brine postflush. Consistent with previous literature, distinct flow behaviors of partially hydrolyzed polyacrylamide (HPAM) and xanthan polymers in porous media were observed. For HPAM, in the low-flow regime, Newtonian behavior (i.e., resistance factor is independent of flow rate) was exhibited. In the moderate- to-high-flow regime, HPAM showed shear-thickening behavior (resistance factor increase with flow rate). In contrast, only shear thinning (resistance factor decreases with flow rate) was detected for xanthan polymer. By analyzing the retention and rheology of both HPAM and xanthan polymers, we show that hydrodynamic retention has little effect on polymer rheology in porous media.
机译:在本研究中评估了由作用于聚合物分子的流体动力学力的增加引起的聚合物保持。结果表明这种流体动力学保留是强烈的流速依赖性。在低流量区域中,保持率随着流速提高而突然增加。相反,在高流量区域,增加变得更加渐变。我们的结果还表明,这种流动诱导的保留是完全可逆的(不会发生增量不可逆保留),其也通过在100pV的盐水后溢出后确定的恒定残留的阻力因子来证实。观察到与先前的文献一致,观察到部分水解的聚丙烯酰胺(HPAM)和多孔介质中的黄原烷聚合物的不同流动性。对于HPAM,在低流量方案中,展出了牛顿行为(即阻力因子与流速无关)。在中等到高流量的状态下,HPAM显示剪切增厚行为(电阻因子随流速增加)。相反,对于黄原烷聚合物,仅检测到仅剪切稀疏(具有流速的电阻因子降低)。通过分析HPAM和黄原酸盐聚合物的保留和流变,展示了流体动力学保留对多孔介质中的聚合物流变效果不大。

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