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首页> 外文期刊>International Journal of Engineering Science >The influence of contact angle on capillary pressure-saturation relations in a porous medium including various liquids
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The influence of contact angle on capillary pressure-saturation relations in a porous medium including various liquids

机译:接触角对包含多种液体的多孔介质中毛细管压力-饱和度关系的影响

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Quantitative description and modeling of two-phase flow in porous media requires specification of functional relationships between capillary pressure and saturation. In the presented study, this relationship was examined for various liquids by using the dimensionless capillary pressure function, which was developed by Leverett. The measurement of liquid saturations was achieved by a gamma attenuation system. The Ottawa sand as a homogeneous porous medium and water, ethanol, LNAPL (toluene) as liquids were used in the experiments. The imbibition and drainage stages were performed for all liquids. The Carman-Ergun equation was used for the permeability in the Leverett function. The differences in the capillary pressure curves of three liquids were correlated by the contact angles of liquids. For this aim, a correlation was defined for the imbibition and the drainage. In the presented study, the contact angles for three liquids with glass sphere were measured and the advancing and receding contact angles were used for the imbibition and drainage, respectively, in the correlation.
机译:多孔介质中两相流的定量描述和建模需要规范毛细管压力和饱和度之间的函数关系。在本研究中,通过使用Leverett开发的无量纲毛细管压力函数,检查了各种液体的这种关系。液体饱和度的测量是通过伽马衰减系统实现的。在实验中使用渥太华砂作为均匀的多孔介质,并使用水,乙醇,LNAPL(甲苯)作为液体。对所有液体进行吸水和排水阶段。 Carman-Ergun方程用于Leverett函数中的磁导率。三种液体的毛细管压力曲线的差异与液体的接触角相关。为此,定义了吸水和排水之间的关系。在本研究中,测量了三种液体与玻璃球的接触角,并将相关的前进和后退接触角分别用于吸水和排水。

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