首页> 外文期刊>Computational Geosciences >A model for discrete fracture-clay rock interaction incorporating electrostatic effects on transport
【24h】

A model for discrete fracture-clay rock interaction incorporating electrostatic effects on transport

机译:一种离散骨折 - 粘土岩石相互作用的模型,包括静电效应对运输

获取原文
获取原文并翻译 | 示例
       

摘要

A model based on the code CrunchClay is presented for a fracture-clay matrix system that takes electrostatic effects on transport into account. The electrostatic effects on transport include those associated with the development of a diffusion potential as captured by the Nernst-Planck equation, and the formation of a diffuse layer bordering negatively charged clay particles within which partial anion exclusion occurs. The model is based on a dual continuum formulation that accounts for diffuse layer and bulk water pore space, providing a more flexible framework than is found in the classical mean electrostatic potential models. The diffuse layer model is obtained by volume averaging ion concentrations in the Poisson-Boltzmann equation, but also includes the treatment of longitudinal transport within this continuum. The calculation of transport within the bulk and diffuse layer porosity is based on a new formulation for the Nernst-Planck equation that considers averaging of diffusion coefficients and accumulation factors at grid cell interfaces. Equations for function residuals and the associated Jacobian matrix are presented such that the system of nonlinear differential-algebraic equations can be solved with Newton's method. As an example, we consider a 2D system with a single discrete fracture within which flow and advective transport occurs that is coupled to diffusion in the clay-rich matrix. The simulation results demonstrate the lack of retardation for anions (e.g., ~(36)Cl~-) of the contaminant plume within the fracture flow system because they are largely excluded from the charged clay rock, while the migration of cations (e.g., ~(900Sr~(++)) is more strongly attenuated. The diffusive loss of divalent cations in particular from the fracture is accentuated by their accumulation in the diffuse layer within the clay-rich matrix.
机译:呈现基于代码CrunchClay的模型,用于骨折 - 粘土矩阵系统,其考虑到运输的静电效应。对运输的静电效应包括与由NERNST-PLANCK方程捕获的扩散电位的发展相关的那些,并且形成弥漫层的弥射带负电的粘土颗粒发生在其中部分阴离子排除的情况下。该模型基于双连续制剂,其考虑漫射层和散装水孔隙空间,提供比在经典平均静电潜在模型中的框架更灵活的框架。漫反射层模型是通过Poisson-Boltzmann方程中的体积平均离子浓度获得的,而且还包括在该连续体内处理纵向运输。散装和漫射层孔隙内的传输的计算基于NERST-PLANCK方程的新配方,其考虑了网格单元接口的扩散系数的平均和累积因子的平均。呈现功能残差的方程和相关的Jacobian矩阵,使得可以用牛顿的方法解决非线性差分 - 代数方程的系统。作为示例,我们考虑一个具有单个离散骨折的2D系统,在该系统内发生流动和平流传输,其耦合到富含粘土的基质中的扩散。模拟结果表明,裂缝流动系统内的阴离子(例如,〜(36)Cl〜 - )缺乏延迟,因为它们主要被排除在带电粘土岩之外,而阳离子的迁移(例如,〜 (900SR〜(++))更加强烈衰减。特别是骨折的二价阳离子的扩散丧失通过它们在富含粘土的基质内的弥漫层中的积累而突出。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号