首页> 外文期刊>Brazilian journal of chemical engineering >PREDICTING THE PENETRATION AND NAVIGATING THE MOTION OF A LIQUID DROP IN A LAYERED POROUS MEDIUM: VISCOUS FINGERING VS. CAPILLARY FINGERING
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PREDICTING THE PENETRATION AND NAVIGATING THE MOTION OF A LIQUID DROP IN A LAYERED POROUS MEDIUM: VISCOUS FINGERING VS. CAPILLARY FINGERING

机译:预测层状多孔介质中液滴的渗透和运动:粘性指VS。毛细管指法

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In this paper, penetration of a liquid drop in a layered porous medium as well as its motion navigation was investigated using the lattice Boltzmann method (LBM). The porous medium was generated by locating square obstacles randomly in the each layer which would cause the layered porosity in the domain. Two regimes of penetration; (a) capillary fingering regime and (b) viscous fingering regime were used for this study. The relationship between the porosity and the penetration rate was studied. The effect of porous surface type (i.e., hydrophobicity or hydrophilicity) on the penetration rate and penetration pattern was also investigated. A new parameter, called “Percent of hydrophobicity”, was defined such that each layer of the porous medium could have multiple properties. This means that in each layer some solid elements might be randomly hydrophobic or hydrophilic. Using this hydrophobicity coefficient, one could navigate the motion of the liquid in such porous media.
机译:在本文中,使用格子Boltzmann方法(LBM)研究了液滴在层状多孔介质中的渗透及其运动导航。多孔介质是通过在每层中随机放置方形障碍物而生成的,这将导致区域中的分层孔隙。两种渗透方式; (a)毛细管指法和(b)粘性指法用于本研究。研究了孔隙率与渗透率之间的关系。还研究了多孔表面类型(即疏水性或亲水性)对渗透速率和渗透图案的影响。定义了一个新参数,称为“疏水性百分比”,以使多孔介质的每一层都可以具有多种特性。这意味着在每一层中,某些固体元素可能是随机疏水或亲水的。使用这种疏水性系数,可以在这种多孔介质中控制液体的运动。

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