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Dynamics of capillary flow and transport properties in porous media by time-controlled porosimetry

机译:时间控制孔隙率法在多孔介质中毛细管流动和传输特性的动力学

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摘要

The dynamics of capillary flow in porous media at the pore-scale, the absolute permeability, the effective and the relative permeability are calculated from time-controlled porosimetry data. Recent research into the experimental mode of data acquisition in mercury porosimetry has shown that the time-controlled mercury intrusion allows us to analyse the pore-scale complexity of a pore network and to obtain local relaxation phenomena due to the presence of a well-controlled local permeability of the porous media. The study of the flow regime in Hg-air displacements and different values of log M-log Ca obtained in mercury porosimetry show that the main flow regime is a capillary regime. An extended Washburn equation proposed by Sorbie et al. has already been used to analyse the dynamics of capillary flow, the pore filling time and the relative filling order of large and small pores. This method was applied to different calcareous porous materials characterized by different textures. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 24]
机译:根据时间控制的孔隙率数据,计算了孔隙度,绝对渗透率,有效渗透率和相对渗透率在多孔介质中的毛细管流动动力学。对汞孔隙率法数据采集实验模式的最新研究表明,时间控制的汞入侵使我们能够分析孔隙网络的孔隙尺度复杂性,并获得由于存在受控良好的局部而引起的局部松弛现象。多孔介质的渗透性。对汞气置换流态和水银孔隙率法测得的log M-log Ca的不同值的研究表明,主要流态是毛细管态。 Sorbie等人提出的扩展的Washburn方程。已经用于分析毛细管流动的动力学,毛孔填充时间以及大,小孔的相对填充顺序。该方法应用于质地不同的钙质多孔材料。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:24]

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