...
首页> 外文期刊>Physical review letters >Percolation and Grain Boundary Wetting in Anisotropic Texturally Equilibrated Pore Networks
【24h】

Percolation and Grain Boundary Wetting in Anisotropic Texturally Equilibrated Pore Networks

机译:各向异性纹理平衡孔隙网络的渗流和颗粒边界润湿

获取原文
获取原文并翻译 | 示例
           

摘要

In texturally equilibrated porous media the pore geometry evolves to minimize the energy of the liquid-solid interfaces, while maintaining the dihedral angle θ at solid-solid-liquid contact lines. We present computations of three-dimensional texturally equilibrated pore networks using a level-set method. Our results show that the grain boundaries with the smallest area can be fully wetted by the pore fluid even for θ > 0. This was previously not thought to be possible at textural equilibrium and reconciles the theory with experimental observations. Even small anisotropy in the fabric of the porous medium allows the wetting of these faces at very low porosities, Φ < 3%. Percolation and orientation of the wetted faces relative to the anisotropy of the fabric are controlled by θ. The wetted grain boundaries are perpendicular to the direction of stretching for θ > 60° and the pores do not percolate for any investigated Φ. For θ < 60°, in contrast, the grain boundaries parallel to the direction of stretching are wetted and a percolating pore network forms for all Φ investigated. At low θ even small anisotropy in the fabric induces large anisotropy in the permeability, due to the concentration of liquid on the grain boundaries and faces.
机译:在结构上平衡的多孔介质中,孔的几何形状演变为最小化液-固界面的能量,同时在固-固-液接触线处保持二面角θ。我们目前使用水平集方法计算三维纹理平衡的孔隙网络。我们的结果表明,即使在θ> 0的情况下,最小面积的晶界也可以被孔隙流体完全润湿。这以前在结构平衡上被认为是不可能的,并且使该理论与实验观察相吻合。多孔介质的织物即使很小的各向异性也可以使这些表面在非常低的孔隙度(Φ<3%)下润湿。润湿面相对于织物各向异性的渗透和取向由θ控制。当θ> 60°时,润湿的晶界垂直于拉伸方向,并且对于任何研究的Φ,孔不会渗透。相反,当θ<60°时,平行于拉伸方向的晶界被润湿,并且所有Φ都形成了渗流孔网络。在低θ的情况下,由于晶粒边界和表面上的液体浓度较高,即使织物中的各向异性较小,也会在渗透率中引起较大的各向异性。

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