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Study on the flow resistance of the dispersion system of deformable preformed particle gel in porous media using LBM-DEM-IMB method

机译:使用LBM-DEM-IMB方法研究多孔介质中可变形预成型颗粒凝胶分散系统的流动阻力

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After being injected into the porous media, the dispersion system of preformed particle gel (PPG) tends to enter high permeability regions and block water channeling passages, which forces the subsequent water to turn to the low permeability regions and thus increases sweep efficiency and enhances oil recovery. However, it is still unclear about the influence factors and the mechanisms how PPG increases water flow resistance, which limits the application of PPG in more oilfields. Therefore, the paper combines the lattice Boltzmann method (LBM), the discrete element method (DEM) and the improved immersed moving boundary (IMB) method to simulate the migration of deformable PPG in porous media. On the basis, the paper quantitatively analyzes the variation law of displacement pressure across the porous media and discusses the influence factors such as the PPG diameter, elasticity modulus and the number concentration. Results indicate that, because of the friction and retention of PPG in pore-throat, the displacement pressure across the porous media during PPG flooding is much higher than that during water flooding. In other words, the existence of PPG increases the flow resistance of injected water. Besides, the displacement pressure is always fluctuant resulting from the continuous process of PPG migration, retention, deformation and remigration. Influence factor analysis shows that the incremental value and fluctuation degree of flow resistance increase with the PPG diameter, elasticity modulus and the number concentration. The study not only provides useful reference for future PPG flooding, but also benefits the development of deformable particle flow theory.
机译:在喷射到多孔介质中,预成形颗粒凝胶(PPG)的分散系统倾向于进入高渗透区域和阻挡水道通道,其迫使后续水转向低渗透区域,从而提高扫描效率并增强油恢复。然而,仍然尚不清楚影响因素和PPG如何增加水流动阻力的机制,这限制了PPG在更多油田中的应用。因此,本文结合了晶格Boltzmann方法(LBM),离散元素法(DEM)和改进的浸没的移动边界(IMB)方法来模拟多孔介质中可变形PPG的迁移。在基础上,本文定量分析多孔介质上的位移压力的变化规律,并讨论了PPG直径,弹性模量和数量浓度的影响因素。结果表明,由于PPG在孔隙中的PPG摩擦和保留,PPG泛滥过程中多孔介质上的位移压力远高于水驱。换句话说,PPG的存在增加了喷射水的流动阻力。此外,位移压力始终波动由PPG迁移,保留,变形和搬迁的连续过程产生波动。影响因子分析表明,流动阻力的增量值和波动程度随着PPG直径,弹性模量和数量浓度而增加。该研究不仅为未来的PPG洪水提供了有用的参考,而且有利于可变形粒子流动理论的发展。

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