首页> 外文会议>SPE Improved Oil Recovery Conference >The Onset of Spontaneous Imbibition: How Irregular Fronts Influence Imbibition Rate and Scaling Groups
【24h】

The Onset of Spontaneous Imbibition: How Irregular Fronts Influence Imbibition Rate and Scaling Groups

机译:自发性吸收的开始:不规则的前线如何影响利用率和缩放组

获取原文

摘要

Spontaneous imbibition is a capillary dominated displacement process where a non-wetting fluid is displaced from a porous medium by the inflow of a more-wetting fluid. Spontaneous imbibition strongly impacts waterflood oil recovery in fractured reservoirs and is therefore widely studied, often using core scale experiments for predictions. Decades of core scale experiments have concluded that spontaneous imbibition occurs by a uniformly shaped saturation front and that the rate of imbibition scales with square root of time. We use emerging imaging techniques to study local flow patterns and present new experimental results where spontaneous imbibition deviates from this behavior. The imbibition rate during early stages of spontaneous imbibition (the onset period) was sometimes observed to deviate from the square root of time behavior. The impact of the onset period on the imbibition process is, however, not well understood. In this work, the development of displacement fronts were visualized during the onset period, using twodimensional paperboard models and core plugs imaged using Positron Emission Tomography (PET-CT). The new experimental results provided insight on the dynamics during the initial spontaneous imbibition period. Controlled two-dimensional paperboard experiments demonstrated that restricted wetting phase flow through the surface exposed to water caused irregular saturation fronts and deviation from the square root of time behavior during the onset period. Local restriction of the wetting phase flow was observed during spontaneous imbibition in sandstone core plugs as a result of non-uniform wetting preference. The presence of nonuniform wetting resulted in unpredictable spontaneous imbibition behavior, with induction time (delayed imbibition start) and highly irregular fronts. Without imaging, the development of irregular saturation fronts cannot be observed locally; hence the effect cannot be accounted for, and the development of spontaneous imbibition in the core erroneously interpreted as a corescale wettability effect. This underlines the undeniable need for a homogenous wettability preference through the porous medium when performing laboratory spontaneous imbibition measurements. Our observations of non-uniform wetting preference will affect Darcy-scale wettability measurements, scaling and modeling. We argue that great care must be taken when preparing core plugs for spontaneous imbibition, to avoid experimental artifacts.
机译:自发性吸收是一种毛细管主导位移过程,其中通过更湿润的流体的流入从多孔介质中置换非润湿流体。自发性吸收强烈影响裂缝储层中的水泡油回收,因此广泛研究,通常使用核心规模实验进行预测。几十年的核心规模实验已经得出结论,自发性吸收通过均匀形状的饱和前沿发生,并且具有平方根的吸入尺度的速率。我们使用新兴的成像技术来研究局部流动模式并提出新的实验结果,自发性吸收偏离这种行为。有时观察到自发性吸收的早期阶段的吸收率(开始时期)以偏离时间行为的平方根。然而,发病期对吸入过程的影响并不充分了解。在这项工作中,使用使用正电子发射断层扫描(PET-CT),在起始时段内可视化位移前沿的开发。新的实验结果为初始自发性吸收期间提供了对动态的洞察力。受控的二维纸板实验证明,限制润湿相通过暴露于水的表面引起的饱和前沿和起始时段期间的时间行为的平方根偏离。由于不均匀的润湿偏好,在砂岩芯塞中自发性吸收期间观察到润湿相流的局部限制。不均匀润湿的存在导致不可预测的自发性吸收行为,诱导时间(延迟吸收开始)和高度不规则的前沿。没有成像,在本地不能观察到不规则饱和前面的发展;因此,不能占效果,并且在核心中的自发性吸收的发展被错误地解释为渐进式润湿性效应。当执行实验室自发性吸收测量时,这强调了通过多孔介质通过多孔介质的均匀润湿性偏好的不可否认的需求。我们对非均匀润湿偏好的观察将影响达西规模的润湿性测量,缩放和建模。我们认为在准备自发性吸收时必须妥善小心,以避免实验伪影。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号