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首页> 外文期刊>Journal of Hydrology >Non-monotonic permeability variation during colloidal transport: Governing equations and analytical model
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Non-monotonic permeability variation during colloidal transport: Governing equations and analytical model

机译:胶体运输过程中的非单调渗透性变异:控制方程和分析模型

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Permeability decline associated with the migration of natural reservoir fines impairs the well index of injection and production wells in aquifers and oilfields. In this study, we perform laboratory corefloods using aqueous solutions with different salinities in engineered rocks with different kaolinite content, yielding fines migration and permeability alteration. Unusual permeability growth has been observed at high salinities in rocks with low kaolinite concentrations. This has been attributed to permeability increase during particle detachment and re-attachment of already mobilised fines by electrostatic attraction to the rock in stagnant zones of the porous space. We refine the traditional model for fines migration by adding mathematical expressions for the particle re-attachment rate, particle detachment with delay relative to salinity decrease, and the attached-concentration-dependency of permeability. A one-dimensional flow problem that accounts for those three effects allows for an exact analytical solution. The modified model captures the observed effect of permeability increase at high water salinities in rocks with low kaolinite concentrations. The developed model matches the coreflooding data with high accuracy, and the obtained model coefficients vary within their usual intervals. (C) 2017 Elsevier B.V. All rights reserved.
机译:与天然水库迁移相关的渗透率下降损害了含水层和油田的注射和生产井的井指数。在这项研究中,我们使用具有不同高岭石含量的工程岩石中的水溶液进行实验室内氟普斯,含有粉末迁移和渗透性改变。在具有低高岭石浓度的岩石中观察到不寻常的渗透性生长。这一直归因于颗粒脱离期间的渗透性增加,并且通过静电吸引到多孔空间的停滞区域中的岩石重新连接已经动员的细粉。通过向粒子重连接速率添加数学表达式来优化传统的粉末迁移模型,延迟相对于盐度的延迟降低,以及渗透性依赖性的粒子脱离。计算这三种效果的一维流出问题允许精确的分析解决方案。改性模型捕获岩石中高水盐水盐水渗透率升高的观察到效果。开发的模型以高精度与CorePlood数据匹配,并且所获得的模型系数在其通常的间隔内变化。 (c)2017年Elsevier B.V.保留所有权利。

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