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Flow Patterns of Viscoelastic Fracture Fluids in Porous Media: Influence of Pore-Throat Structures

机译:多孔介质中粘弹性骨折流体的流动模式:孔隙结构的影响

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摘要

Viscoelastic surfactant (VES) fluid and hydrolyzed polyacryamide (HPAM) solution are two of the most common fracturing fluids used in the hydraulic fracturing development of unconventional reservoirs. The filtration of fracturing fluids in porous media is mainly determined by the flow patterns in pore-throat structures. In this paper, three different microdevices analogue of porous media allow access to a large range of Deborah number (De) and concomitantly low Reynolds number (Re). Continuous pore-throat structures were applied to study the feedback effect of downstream structure on upstream flow of VES fluid and HPAM solution with Deborah (De) number from 1.11 to 146.4. In the infinite straight channel, flow patterns between VES fluids and HPAM solution were similar. However, as pore length shortened to 800 μm, flow field of VES fluid exhibited the triangle shape with double-peaks velocity patterns. The flow field of HPAM solution presented stable and centralized streamlines when Re was larger than 4.29 × 10−2. Additionally, when the pore length was further shortened to 400 μm, double-peaks velocity patterns were vanished for VES fluid and the stable convergent flow characteristic of HPAM solution was observed with all flow rates.
机译:粘弹性表面活性剂(VES)流体和水解的聚丙酰胺(HPAM)溶液是在非传统储层的液压压裂发育中使用的最常见的压裂液中的两种。多孔介质中压裂液的过滤主要由孔喉部结构中的流动模式决定。在本文中,多孔介质的三种不同微器件的模拟允许访问一个大范围的底波拉数(德)以及伴随低雷诺数(Re)。应用连续孔隙结构,研究下游结构对VES流体和HPAM溶液的上游流动的反馈效果,并在1.11至146.4中使用脱鹃(DE)数量。在无限的直通道中,VES流体和HPAM溶液之间的流动模式相似。然而,随着孔的长度缩短至800μm,VES流体的流场显示出具有双峰值速度模式的三角形形状。 HPAM溶液的流场呈现稳定且集中的流线,当RE大于4.29×10-2时。另外,当孔长度进一步缩短至400μm时,为VES流体消失双峰值速度模式,并且通过所有流速观察HPAM溶液的稳定收敛流量。

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