Three-Phase Effective Contact Angle in a Model Pore

被引:0
作者
F. M. van Kats
P. J. P. Egberts
C. P. J. W. van Kruijsdijk
机构
[1] Netherlands Institute of Applied Geoscience TNO,Department of Dredging and Development (DDD)
[2] Royal Boskalis Westminster,undefined
来源
Transport in Porous Media | 2001年 / 43卷
关键词
three-phase flow; lattice-Boltzmann simulations; pore throat; capillary pressure threshold; interfacial tension; effective contact angle; wetting film;
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摘要
We consider a model pore (2D) in which a sharp interface between two fluids contact a third fluid which wets the solid boundary. If the configuration is capillary dominated, the geometry can be determined analytically in terms of the effective contact angle. This angle depends not only on the interfacial tensions, but also on the capillary pressures. However, if the height of the cusp formed by the wetting fluid is much smaller than the pore width, the effective contact angle is a simple function of the interfacial tensions. It turns out to be the same function as in the case of an undeformed wetting layer of molecular thickness. The analytical expression for the effective contact angle has been confirmed by a numerical technique, known as the lattice-Boltzmann method. This method, in turn, has been validated with Neumann's law for the three-phase contact angles.
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页码:225 / 238
页数:13
相关论文
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