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Criteria for Applying the Lucas-Washburn Law

机译:卢卡斯·瓦斯本定律的适用标准

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摘要

Spontaneous imbibition happens in many natural and chemical engineering processes in which the mean advancing front usually follows Lucas-Washburn’s law. However it has been found that the scaling law does not apply in many cases. There have been few criteria to determine under what conditions the Washburn law works. The effect of gravity on spontaneous imbibition in porous media was investigated both theoretically and experimentally. The mathematical model derived analytically was used to calculate the imbibition rates in porous media with different permeabilities. The results demonstrated that the effect of gravity on spontaneous imbibition was governed by the hydraulic conductivity of the porous media (permeability of the imbibition systems). The criteria for applying the Lucas-Washburn law have been proposed. The effect of gravity becomes more apparent with the increase in permeability or with the decrease in CGR number (the ratio of capillary pressure to gravity forces) and may be ignored when the CGR number is less than a specific value  ≅ 3.0. The effect of gravity on imbibition in porous media can be modeled theoretically. It may not be necessary to conduct spontaneous imbibition experiments horizontally in order to exclude the effect of gravity, as has been done previously.
机译:自发吸收发生在许多自然和化学工程过程中,其中平均前进前沿通常遵循卢卡斯-沃什本定律。然而,已经发现缩放定律在许多情况下并不适用。很少有标准可以确定Washburn法在什么条件下起作用。从理论上和实验上研究了重力对多孔介质中自发吸收的影响。通过分析得出的数学模型用于计算具有不同渗透率的多孔介质中的吸收率。结果表明,重力对自发吸收的影响由多孔介质的水力传导率(吸收系统的渗透率)决定。已经提出了适用卢卡斯-沃本法则的标准。重力的影响随着渗透率的增加或CGR数(毛细管压力与重力的比)的降低而变得更加明显,并且当CGR数小于特定值≅3.0时可以忽略不计。重力对多孔介质中吸收的影响可以从理论上建模。像以前所做的那样,可能不需要水平进行自吸实验来排除重力的影响。

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