The molecular structure of moving contact lines (MCLs) and the emergence of a corresponding macroscopic dissipation have made the MCL a paradigm of fluid dynamics. Through novel averaging techniques that remove capillary waves smearing we achieve an unprecedented resolution in molecular dynamics simulations and find that they match with the continuum description obtained by finite element method down to molecular scales. This allows us to distinguish dissipation at the liquid-solid interface (Navier-slip) and at the contact line, the latter being negligible for the rather smooth substrate considered
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
The physical processes near a moving contact line are investigated systematically using molecular dy...
By removing the smearing effect of capillary waves in molecular dynamics simulations we are able to ...
Despite decades of research, the modeling of moving contact lines has remained a formidable challeng...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
The movement of the triple contact line plays a crucial role in many applications such as ink-jet pr...
Hypothesis: The notion of the contact line is fundamental to capillary science, where in a large cat...
In this paper, a multiscale moving contact line (MMCL) theory is presented and employed to simulate ...
The no-slip boundary condition, i.e., zero fluid velocity relative to the solid at the fluid-solid i...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
The physical processes near a moving contact line are investigated systematically using molecular dy...
By removing the smearing effect of capillary waves in molecular dynamics simulations we are able to ...
Despite decades of research, the modeling of moving contact lines has remained a formidable challeng...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
The problem of the moving contact line between two immiscible fluids on a smooth surface is revisite...
The movement of the triple contact line plays a crucial role in many applications such as ink-jet pr...
Hypothesis: The notion of the contact line is fundamental to capillary science, where in a large cat...
In this paper, a multiscale moving contact line (MMCL) theory is presented and employed to simulate ...
The no-slip boundary condition, i.e., zero fluid velocity relative to the solid at the fluid-solid i...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
Although the contact angle between a liquid /vapor interface and a flat homogeneous solid at equilib...
The physical processes near a moving contact line are investigated systematically using molecular dy...