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首页> 外文期刊>Advances in Water Resources >A semi-analytical model for computation of capillary entry pressures and fluid configurations in uniformly-wet pore spaces from 2D rock images
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A semi-analytical model for computation of capillary entry pressures and fluid configurations in uniformly-wet pore spaces from 2D rock images

机译:一个半解析模型,用于从二维岩石图像中计算均匀湿润孔隙空间中的毛细管进入压力和流体构造

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摘要

A novel semi-analytical model for computation of capillary entry pressures and associated fluid configurations in arbitrary, potentially non-convex, 2D pore space geometries at uniform wettability is developed. The model computes all possible centre positions of circular arcs, and physically sound criteria are implemented to determine the set of these arcs that correspond to geometrically allowed interfaces. Interfaces and pore boundary segments are connected to form closed boundaries of identified geometrical regions. These regions are classified as either oil regions, located in the wider parts of the pore space, or as water regions located in pore space constrictions. All possible region combinations are identified and evaluated for each radius value in an iterative procedure to determine the favourable entry radius and corresponding configuration based on minimisation of free energy. The model has been validated by comparison with known analytical solutions in idealised pore geometries. In cases where different analytical solutions are geometrically possible, the model generates several oil and water regions, and the valid solution is determined by the region combination that corresponds to the most favourable entry pressure, consistent with the analytical solution. Entry pressure radii and configurations are computed in strongly non-convex pore spaces extracted from an image of Bentheimer sandstone, which demonstrates that the model captures successfully well-known characteristics of capillary behaviour at different wetting conditions. The computations also demonstrate the importance of selecting the fluid configuration of minimum change in free energy. In some cases, a merged region formed by a combination of oil and water regions corresponds to the favourable entry configuration of oil, whereas in other cases, an individual oil region may correspond to the favourable oil entry configuration. It is also demonstrated that oil entry configurations may constitute merged regions for weakly water-wet conditions and individual oil regions for strongly water-wet conditions in the same pore space. The computations show that the ratio of pore area to perimeter multiplied by the cosine of the contact angle under-predicts the entry pressure radii in Bentheimer sandstone pore spaces. An alternative formula is proposed for prediction of entry radii for nonzero contact angles based on the entry radii obtained for zero contact angles.
机译:开发了一种新颖的半分析模型,用于计算均匀润湿性下任意,潜在的非凸面,二维孔空间几何形状中的毛细管入口压力和相关流体配置。该模型计算圆弧的所有可能的中心位置,并采用物理上合理的标准来确定与几何允许界面相对应的这些圆弧的集合。连接界面和孔边界段以形成确定的几何区域的闭合边界。这些区域被分类为位于孔隙空间较宽部分的油区或位于孔隙狭窄处的水区。在迭代过程中,针对每个半径值识别和评估所有可能的区域组合,以基于自由能的最小化确定有利的进入半径和相应的配置。通过与理想孔隙几何形状中的已知分析解决方案进行比较,对模型进行了验证。在几何上可能存在不同分析解决方案的情况下,模型会生成几个油和水区域,有效解决方案由与该分析解决方案一致的对应于最有利进入压力的区域组合来确定。在从Bentheimer砂岩图像中提取的强非凸孔空间中计算了入口压力半径和构造,这表明该模型成功捕获了在不同润湿条件下毛细管行为的众所周知的特征。这些计算还证明了选择自由能最小变化的流体构造的重要性。在一些情况下,由油和水区域的组合形成的合并区域对应于油的有利进入构型,而在其他情况下,单个油区域可以与有利的油进入构型相对应。还表明,在相同的孔隙空间中,油进入构型可能构成弱水湿条件的合并区域,而构成强水湿条件的单个油区域。计算结果表明,孔隙面积与周长之比乘以接触角的余弦值不足以预测本特海默砂岩孔隙空间的入口压力半径。提出了一个替代公式,用于基于零接触角获得的入射半径来预测非零接触角的入射半径。

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