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Experimental Study on Nanoparticles Transport and Its Effects on Two-Phase Flow Behavior in Porous Networks

机译:多孔网络中纳米颗粒传输及其对两相流动行为影响的实验研究

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摘要

A suspension of nanoscale polysilicon particles (NSPP) is injected into low permeable sand formations for reducing flow resistance of water. A set of instmments was assembled to get insights into the characteristics, adsorption and transport of the NSPP, wettability alteration, and its effects on two-phase flow performances in porous media. The TEM images show that the particles are approximate spheres with diameters from 10 to 200 nm. The NSPP could be adsorbed on the pore surfaces, and it looks like frost on the grains in the crossing section of sandstone. The wetting angle of water drop becomes far larger than 90° after the adsorption of the NSPP. It implies that the adsorption on pore surfaces leads to wettability alteration from water-wetness to oil-wetness. Wettability alteration is a major factor to change the percolation flow resistances of two phases, which has been verified by the change in relative permeabilities of the two phases. The flowable improvement of water results from the reduction in filtrational resistance of water in the sand formation.
机译:将纳米级多晶硅颗粒(NSPP)的悬浮液注入低渗透性沙层中,以降低水的流动阻力。组装了一组仪器,以深入了解NSPP的特性,吸附和运输,润湿性变化及其对多孔介质中两相流动性能的影响。 TEM图像显示颗粒是直径约10至200nm的近似球形。 NSPP可能被吸附在孔隙表面,在砂岩横断面的颗粒上看起来像霜。 NSPP吸附后,水滴的润湿角变得远远大于90°。这意味着孔表面的吸附导致润湿性从水润湿性变为油润湿性。润湿性的改变是改变两相的渗流阻力的主要因素,这已经通过两相的相对渗透率的变化得到证实。水的流动性改善是由于砂层中水的过滤阻力降低所致。

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