'/> Automatic method for estimation of <ce:italic>in situ</ce:italic> effective contact angle from X-ray micro tomography images of two-phase flow in porous media
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Automatic method for estimation of in situ effective contact angle from X-ray micro tomography images of two-phase flow in porous media

机译:用于估计原位的自动方法有效接触角

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Graphical abstract Display Omitted Abstract Multiphase flow in porous media is strongly influenced by the wettability of the system, which affects the arrangement of the interfaces of different phases residing in the pores. We present a method for estimating the effective contact angle, which quantifies the wettability and controls the local capillary pressure within the complex pore space of natural rock samples, based on the physical constraint of constant curvature of the interface between two fluids. This algorithm is able to extract a large number of measurements from a single rock core, resulting in a characteristic distribution of effective in situ contact angle for the system, that is modelled as a truncated Gaussian probability density distribution. The method is first validated on synthetic images, where the exact angle is known analytically; then the results obtained from measurements within the pore space of rock samples imaged at a resolution of a few microns are compared to direct manual assessment. Finally the method is applied to X-ray micro computed tomography (micro-CT) scans of two Ketton cores after waterflooding, that display water-wet and mixed-wet behaviour. The resulting distribution of in situ contact angles is characterized in terms of a mixture of truncated Gaussian densities. ]]>
机译:<![cdata [ 图形摘要 显示省略 抽象 多相介质中的多相流受到系统润湿性的强烈影响,这影响了居住在孔隙中的不同阶段的界面的布置。我们提出了一种估计有效接触角的方法,该方法量化润湿性并控制自然岩石样本的复杂孔隙空间内的局部毛细管压力,基于两个流体之间的界面恒定曲率的物理约束。该算法能够从单个岩石核心提取大量测量,导致有效的原位的特性分布,系统的斜体>接触角度,其被建模为截短的高斯概率密度分布。该方法首先在合成图像上验证,其中确切的角度是在分析上已知的;然后将从在分辨率的分辨率成像的岩石样品的孔隙空间内获得的结果与直接手动评估进行比较。最后,该方法适用于水上两次Ketton核心的X射线微计算机断层扫描(Micro-CT)扫描,显示水湿和混合湿行为。 原位的产生分布:斜体>接触角的特征在于截短的高斯密度的混合物。 ]]>

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