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Experimental study of colloidal particles deposit in porous media: Hydrodynamics and salinity effects

机译:多孔介质中胶体颗粒沉积的实验研究:流体动力学和盐度效应

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摘要

Experimental study of colloidal particles deposit in porous media: Hydrodynamics and salinity effects. This study deals with colloid transport in porous media which applications are found in subsurface water, petroleum engineering or civil engineering. An experimental study of colloidal polystyrene Latex particles deposition in a consolidated porous medium is presented. The influence of ionic strength of the colloid suspension and the flow rate on particle deposition is investigated. We see first that beyond a critical salt concentration, the total collector efficiency increases with the ionic strength. Moreover, such collector efficiency decreases as the flow rate increases according to theory. In other respects, using a gamma ray attenuation technique allows us to measure local porosity fluctuation due to particles deposition. By this way deposition kinetics may be followed locally and precisely. Nevertheless when considering the thickness of the adsorbed layer over large scales, obtained results using the gamma rays attenuation technique are found in good agreement with those obtained by means of an usual technique especially at latest stages of adsorption process. To cite this article: A. Djehiche et al., C. R. Mecanique 337 (2009).
机译:胶体颗粒沉积在多孔介质中的实验研究:流体动力学和盐度效应。这项研究涉及在地下介质,石油工程或土木工程中发现的多孔介质中的胶体运输。胶体聚苯乙烯乳胶颗粒在固结多孔介质中沉积的实验研究。研究了胶体悬浮液的离子强度和流速对颗粒沉积的影响。我们首先看到,超过临界盐浓度,总捕集效率随离子强度的增加而增加。而且,根据理论,这种收集器效率随着流量的增加而降低。在其他方面,使用伽马射线衰减技术使我们能够测量由于颗粒沉积而引起的局部孔隙度波动。通过这种方式,可以局部且精确地遵循沉积动力学。然而,当大规模地考虑吸附层的厚度时,发现使用伽马射线衰减技术获得的结果与通过常规技术获得的结果非常一致,尤其是在吸附过程的最新阶段。引用本文:A. Djehiche等,C。R. Mecanique 337(2009)。

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