The mass of water imbibed into a core sample is approximately equal to a mass of oil imbibed in the core sample core samples of a same rock type and dimensions, and for equal capillary forces;
32.
Based on their extensive study of CFD software tools for micro�uidic applications, researchers at IMTEK, University of Freiburg concluded that generally CFD-ACE + can be recommended for simulation of free surface �ows involving capillary forces.
33.
This action by the surface to pull back on the depressed water interface is the source of a capillary force, which acts tangentially along the contact line and thereby gives rise to a component in the vertical direction.
34.
As water is added to the pore, the thickness of the film increases, the capillary force is reduced in magnitude, and water molecules on the outer portion of the film may begin to flow away from its source.
35.
For low capillary numbers ( a rule of thumb says less than 10 " 5 ), flow in porous media is dominated by capillary forces whereas for high capillary number the capillary forces are negligible compared to the viscous forces.
36.
For low capillary numbers ( a rule of thumb says less than 10 " 5 ), flow in porous media is dominated by capillary forces whereas for high capillary number the capillary forces are negligible compared to the viscous forces.
37.
Recently, Byung Mook Weon of Sungkyunkwan University and Jung Ho Je of Pohang University of Science and Technology showed an observation of reverse particle motion that repels the coffee-ring effect because of the capillary force near the contact line.
38.
In 1960, he moved to the Carnegie Institute of Technology as an associate professor; his research there included work on surface scratching, crystal facetting, instabilities in shape formation of precipitates, and the effect of capillary forces on shape stability.
39.
Thus, a mass change of a core sample due to water imbibition is equal to a mass change of a core sample due to oil imbibition, because water or oil penetration of the porous media at any time is a function of a balance between gravity and capillary forces.
40.
Consequently, the van der Waals forces become dominant for collections of very small particles such as very fine-grained dry powders ( where there are no capillary forces present ) even though the force of attraction is smaller in magnitude than it is for larger particles of the same substance.
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