We study the capillary forces acting on sub-millimeter particles (0.02-0.6 mm) trapped at a liquid-liquid interface due to gravity-induced interface deformations. An analytical procedure is developed to solve the linearized capillary (Young-Laplace) equation and calculate the forces for an arbitrary number of particles, allowing also for a background curvature of the interface. The full solution is expressed in a series of Bessel functions with coefficients determined by the contact angle at the particle surface. For sub-millimeter spherical particles, it is shown that the forces calculated using the lowest order term of the full solution (linear superposition approximation; LSA) are accurate to within a few percents. Consequently the many ...
We develop a general method to study the capillary interactions between objects of arbitrary shape w...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
We investigate the dynamic interfacial deformation induced by micrometric particles exerting a perio...
The dynamics of particles attached to an interface separating two immiscible fluids are encountered ...
For partially wetting, ellipsoidal colloids trapped at a fluid interface, their effective, interface...
This thesis reports numerical and analytical results on the floatation and capillary interaction of ...
In the vadose zone, air–water interfaces play an important role in particle fate and transport, as p...
Objects floating at a liquid interface, such as breakfast cereals floating in a bowl of milk or bubb...
Spheres floating at liquid–fluid interfaces cause interfacial deformations such that their weight is...
International audienceWe report theoretical predictions and measurements of the capillary force acti...
When two particles with a thin liquid film are colliding toward each other, liquid films merge to fo...
The force of attraction between a bubble and a captured particle in flotation, is determined by the ...
A recent experiment revealed the existence of an attractive pair potential of colloidal particles tr...
Particles can be adsorbed to liquid-fluid interface to minimize interfacial energy. The adsorbed par...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
We develop a general method to study the capillary interactions between objects of arbitrary shape w...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
We investigate the dynamic interfacial deformation induced by micrometric particles exerting a perio...
The dynamics of particles attached to an interface separating two immiscible fluids are encountered ...
For partially wetting, ellipsoidal colloids trapped at a fluid interface, their effective, interface...
This thesis reports numerical and analytical results on the floatation and capillary interaction of ...
In the vadose zone, air–water interfaces play an important role in particle fate and transport, as p...
Objects floating at a liquid interface, such as breakfast cereals floating in a bowl of milk or bubb...
Spheres floating at liquid–fluid interfaces cause interfacial deformations such that their weight is...
International audienceWe report theoretical predictions and measurements of the capillary force acti...
When two particles with a thin liquid film are colliding toward each other, liquid films merge to fo...
The force of attraction between a bubble and a captured particle in flotation, is determined by the ...
A recent experiment revealed the existence of an attractive pair potential of colloidal particles tr...
Particles can be adsorbed to liquid-fluid interface to minimize interfacial energy. The adsorbed par...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
We develop a general method to study the capillary interactions between objects of arbitrary shape w...
Micron-sized anisotropic particles with homogeneous surface properties at a fluid interface can defo...
We investigate the dynamic interfacial deformation induced by micrometric particles exerting a perio...