论文标题
建模相对渗透率,包括动态性润湿性过渡区
Modeling of relative permeabilities including dynamic wettability transition zones
论文作者
论文摘要
润湿性是一种孔尺度的特性,它会影响多孔培养基中流体的相对运动和分布。有一些储层流体会激发毛孔内的表面以进行润湿性变化。反过来,这种润湿性会改变达西量表的相对渗透率的动力学。因此,建模对相对渗透率变化的影响对于了解多孔介质中的流体相互作用至关重要。在这项研究中,我们通过修改现有的相对渗透率函数来包括时间依赖性的润湿性变化为相对渗透率 - 饱和关系。为此,我们假设可湿性的变化由基于吸附的模型表示,这是暴露时间和化学依赖性的。然后,将此孔尺度模型与三角管束模型结合,以模拟暴露时间依赖时间相对渗透率数据。模拟数据用于表征和量化相对渗透率 - 饱和曲线中的润湿性动力学。这项研究进一步显示了在动态变化的多孔培养基中准确预测相对渗透性的重要性。
Wettability is a pore-scale property that impacts the relative movement and distribution of fluids in a porous medium. There are reservoir fluids that provoke the surface within pores to undergo a wettability change. This wettability change, in turn, alters the dynamics of relative permeabilities at the Darcy scale. Thus, modeling the impact of wettability change in relative permeabilities is essential to understand fluids interaction in porous media. In this study, we include time-dependent wettability change into the relative permeability--saturation relation by modifying the existing relative permeability function. To do so, we assume the wettability change is represented by the sorption-based model that is exposure time and chemistry dependent. This pore-scale model is then coupled with a triangular bundle-of-tubes model to simulate exposure time-dependent relative permeabilities data. The simulated data is used to characterize and quantify the wettability dynamics in the relative permeability--saturation curves. This study further shows the importance of accurate prediction of the relative permeability in a dynamically altering porous medium.