论文标题

添加剂对纳米毛细血管中油位移的影响:一项介质模拟研究

Effects of additives on oil displacement in nanocapillaries: a mesoscale simulation study

论文作者

da Silva, Guilherme C. Q., Giro, Ronaldo, Horta, Bruno A. C., Neumann, Rodrigo F., Engel, Michael, Steiner, Mathias B.

论文摘要

我们进行了中尺度模拟,以研究添加剂(例如表面活性剂和聚合物)在水和盐水注入中具有的效果。为了重现通过实验或经典分子动力学(MD)获得的物理特性,对多体耗散粒子动力学(MDPD)模型进行了参数化。然后,使用MDPD模型模拟通过水和盐水模拟N多丹烷的位移,表面活性剂浓度范围为1 wt。 %至10 wt。 %SDS和聚合物浓度为0.5 wt。 %hpam。我们观察到,虽然添加剂可以进入毛细血管而不会堵塞,但表面活性剂浓度和注射速率的特定组合可能导致油位移较差。可以从水壁和(表面介导的)水油相互作用之间的平衡来理解该结果。结果,我们的结果表明,从界面速度的函数中,从水湿到油湿的可湿性特征有效逆转。我们通过总结了这些结果对涉及添加剂的流体流体位移的含义。

We performed mesoscale simulations in order to investigate the effects that additives, such as surfactants and polymers, have in the oil displacement process by water and brine injection. A Many-Body Dissipative Particle Dynamics (MDPD) model was parameterized in order to reproduce physical properties obtained either by experiments or Classical Molecular Dynamics (MD). The MDPD model was then employed to simulate the displacement of n-dodecane by water and brine, with surfactant concentrations ranging from 1 wt. % to 10 wt. % SDS and polymer concentration of 0.5 wt. % HPAM. We observed that while the additives may enter the capillary without clogging, specific combinations of surfactant concentrations and injection rates may lead to poor oil displacement. This result can be understood in terms of the balance between water-wall and (surface-mediated) water-oil interactions. As a consequence, our results show an effective reversal of the wettability character, from water-wet to oil-wet, as a function of the interface speed. We conclude by summarizing the implications such results have on the fluid-fluid displacements involving additives.

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