CIESC Journal

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确定多孔介质孔结构参数的渗流网络分析法

辛峰; 王富民; 廖晖; 李绍芬   

  1. School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China
  • 收稿日期:1900-01-01 修回日期:1900-01-01 出版日期:2000-12-18 发布日期:2000-12-18
  • 通讯作者: 辛峰

Determination of a Pore Structure Parameter of Porous Media by Analysis of Percolation
Network Model

XIN Feng; WANG Fumin; LI Shaofen   

  1. School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China
  • Received:1900-01-01 Revised:1900-01-01 Online:2000-12-18 Published:2000-12-18
  • Contact: XIN Feng

摘要: According to the simulation of nitrogen sorption process in porous media with three-
dimensional network model, and the analysis for such a process with percolation theory, a
new method is proposed to determine a pore structure parameter-mean coordination number of
pore network, which represents the connectivity among a great number of pores. Here the
“chamber-throat” model and the Weibull distribution are used to describe the pore
geometry and the pore size distribution respectively. This method is based on the scaling
law of percolation theory after both effects of sorption thermodynamics and pore size on
the sorption hysteresis loops are considered. The results show that it is an effective
procedure to calculate the mean coordination number for micro- and meso-porous media.

关键词: coordination number;porous media;percolation theory;network model;sorption

Abstract: According to the simulation of nitrogen sorption process in porous media with three-
dimensional network model, and the analysis for such a process with percolation theory, a
new method is proposed to determine a pore structure parameter-mean coordination number of
pore network, which represents the connectivity among a great number of pores. Here the
“chamber-throat” model and the Weibull distribution are used to describe the pore
geometry and the pore size distribution respectively. This method is based on the scaling
law of percolation theory after both effects of sorption thermodynamics and pore size on
the sorption hysteresis loops are considered. The results show that it is an effective
procedure to calculate the mean coordination number for micro- and meso-porous media.

Key words: coordination number, porous media, percolation theory, network model, sorption