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Enhanced Permeation of a Hydrophobic Fluid through Particles with Hydrophobic and Hydrophilic Patterned Surfaces

机译:疏水性液体通过具有疏水性和亲水性图案化表面的颗粒的增强渗透性

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The wetting properties of solid surfaces are significant in oil/gas and liquid displacement processes. It is difficult for hydrophobic fluids to permeate channels filled with hydrophilic particles and an aqueous phase, and this is thought to be the primary cause of low yields in low permeability reservoir operations. Using three-dimensional lattice Boltzmann simulations, we show that particles with hydrophobic and hydrophilic patterned surfaces can greatly improve hydrophobic fluid permeation. Specifically, a hydrophobic fluid can easily access micro-channels in the hydrophobic regions, which extend rapidly even to the hydrophilic regions and accelerate hydrophobic fluid escape. This work enriches understanding of multiphase flow in porous media at the pore scale and fracture conductivity and is expected to have great significance in the exploitation of low permeability reservoirs and shale gas.
机译:固体表面的润湿性在油气/液体驱替过程中非常重要。疏水性流体难以渗透充满亲水性颗粒和水相的通道,这被认为是低渗透油藏作业中产量低的主要原因。使用三维格子Boltzmann模拟,我们显示具有疏水性和亲水性图案化表面的颗粒可以大大改善疏水性流体的渗透性。具体而言,疏水性流体可以容易地进入疏水性区域中的微通道,该微通道甚至迅速延伸至亲水性区域并加速了疏水性流体的逸出。这项工作丰富了对多孔介质中孔隙尺度和裂缝导流能力的多相流动的理解,并有望在低渗透油藏和页岩气的开发中具有重要意义。

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