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Investigation of oil production and flowback in hydraulically-fractured water-wet formations using the Lab-on-a-Chip method

机译:使用“芯片实验室”方法研究水力压裂水湿地层的产油和返排

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摘要

It is generally believed that a higher efficiency of flowback of the invaded fluid will result in a reduced formation damage and a higher oil rate. However, in water-wet formations having flow characteristics close to those seen in low permeability formations, high flowback does not always result in high oil production rates. In such reservoirs, the strength of capillary gradient across the matrix-fracture interface controls the amount of invaded-fluid flowback. This paper discusses two factors which impact the strength of capillary gradient: depth of fracture fluid invasion and presence of moderate interfacial tension (IFT) surfactant in the fracture fluid. Microfluidic-chip or otherwise called Lab-on-a-Chip based experiments are conducted in this work to highlight the discussed factors.For a water wetting chip, it is observed that as the depth of fracture fluid invasion into the matrix increases, flowback efficiency is improved while the late-time oil production rate decreases. Additionally, it is found that the presence of a moderate IFT-reducing surfactant in the fracture fluid aids in reducing the invasion-induced formation damage compared to a fracture fluid without surfactant. The work presented strongly impacts the oil industry in contemporary times when hydraulic fracturing is significantly prevalent. The results obtained provide a better understanding of the flow behavior of in-situ and invaded fracture fluids during production phase of the operation.
机译:通常认为,侵入流体的更高的回流效率将导致降低的地层损害和更高的含油率。然而,在具有与低渗透性地层中所见的流动特性接近的水-湿地层中,高的返排并不总是导致高的产油率。在这样的储层中,穿过基质-裂缝界面的毛细管梯度强度控制着流体回流的数量。本文讨论了影响毛细管梯度强度的两个因素:压裂液侵入的深度和压裂液中中等界面张力(IFT)表面活性剂的存在。在这项工作中进行了基于微流控芯片或称为芯片实验室的实验,以突出讨论的因素。对于水润湿芯片,观察到随着裂缝流体侵入基质的深度增加,回流效率改进,同时后期采油率降低。另外,发现与不含表面活性剂的压裂液相比,压裂液中适度降低IFT的表面活性剂的存在有助于减少侵入引起的地层损害。当水力压裂盛行时,提出的工作对当代石油工业产生了巨大影响。所获得的结果可更好地理解该作业生产阶段中原位和侵入裂缝流体的流动行为。

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