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Effect of Acoustic Stimulation on Aqueous Phase Trapping in Low-Permeability Sandstones

机译:声刺激对低渗透砂岩水相捕集的影响

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摘要

Formation damage from aqueous phase trapping in low-permeability sandstones can be removed using mutual solvents, blends of alcohols and mutual solvents, and surfactants. These treatments modify the interfacial tension of the trapped fluids or the wettability of the formation. However, treatments intended to remove a certain type of damage may cause other types of formation damage due to incompatibility with the rock and formation fluids. High-frequency acoustic waves have been used in industrial applications to clean up and remove contaminants. Important studies have been conducted to extend the use of acoustic waves for wellbore stimulation. This technical paper presents a laboratory investigation to determine the effects of ultrasonic (UT) treatment on interfacial tension and wettability alteration during invasion of fracturing fluids treated with surfactants in low-permeability sandstones. An experimental program consisting of a series of spontaneous imbibition experiments was conducted to measure the spontaneous imbibition potential of sandstone rock cores treated with surfactants in the presence of UT energy. Spontaneous imbibition tests were conducted in two steps. In the first, spontaneous imbibition tests were conducted on untreated low-permeability sandstone core samples in the presence of UT radiation. In the second step, spontaneous imbibition tests were conducted on cores flooded with surfactant while exposing the core to UT radiation from an acoustic horn. In each series experiments, the power output was changed to monitor the effect of acoustic power on wettability alteration. Results obtained from the experiments showed that acoustic stimulation improves imbibition of water in both water wet and intermediate wet cores. Wettability alteration is attributed to enhancement of capillary forces in water wet cores. For cores treated with water repelling surfactants, improvement in imbibition is attributed to detachment of surfactant molecules from the pore walls due to acoustic streaming of sonic waves. This research was originally intended to investigate removal of trapped water from fluid injection of low-permeability sandstones by acoustic stimulation. However, the obtained results show that it is possible to improve the recovery of trapped hydrocarbon in low-permeability sandstones under the influence of acoustic stimulation.
机译:可以使用互溶剂,醇和互溶剂的混合物以及表面活性剂来消除低渗透性砂岩中水相捕集引起的地层损害。这些处理改变了被困流体的界面张力或地层的润湿性。然而,由于与岩石和地层流体的不相容性,旨在消除某种类型的损害的处理可能会引起其他类型的地层损害。高频声波已经在工业应用中用于清除和去除污染物。已经进行了重要的研究来扩展声波在井眼增产中的应用。该技术论文提出了一项实验室研究,以确定在低渗透率砂岩中用表面活性剂处理的压裂液侵入过程中,超声(UT)处理对界面张力和润湿性变化的影响。进行了一系列自发吸收实验的实验程序,以测量在UT能量存在下用表面活性剂处理过的砂岩岩心的自发吸收潜力。自发吸收测试分两个步骤进行。首先,在存在UT辐射的情况下,对未经处理的低渗透率砂岩岩心样品进行自发吸水测试。在第二步中,对充满表面活性剂的岩心进行自发吸水测试,同时将岩心暴露于来自声学喇叭的UT辐射。在每个系列实验中,都改变了功率输出以监测声功率对润湿性变化的影响。从实验中获得的结果表明,声刺激改善了水湿芯和中间湿芯中的水吸收。润湿性的变化归因于水湿芯中毛细作用力的增强。对于用拒水表面活性剂处理的岩心,吸水率的提高归因于由于声波的声流而使表面活性剂分子从孔壁脱离。这项研究最初旨在研究通过声刺激从低渗透率砂岩注水中去除截留的水。然而,获得的结果表明,在声学刺激的影响下,可以提高低渗透砂岩中截留的烃的采收率。

著录项

  • 来源
    《Journal of Energy Resources Technology》 |2017年第6期|062905.1-062905.7|共7页
  • 作者单位

    Department of Energy and Mineral Engineering, Pennsylvania State University, 231 Hosler Building University Park, PA, United States;

    Department of Energy and Mineral Engineering, Pennsylvania State University, 231 Hosler Building University Park, PA, United States;

    Department of Energy and Mineral Engineering, Pennsylvania State University, 231 Hosler Building University Park, PA, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 00:26:56

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