English

Effective slip over partially filled microcavities and its possible failure

Fluid Dynamics 2018-05-23 v1

Abstract

Motivated by the emerging applications of liquid-infused surfaces (LIS), we study the drag reduction and robustness of transverse flows over two-dimensional microcavities partially filled with an oily lubricant. Using separate simulations at different scales, characteristic contact line velocities at the fluid-solid intersection are first extracted from nano-scale phase field simulations and then applied to micron-scale two-phase flows, thus introducing a multiscale numerical framework to model the interface displacement and deformation within the cavities. As we explore the various effects of the lubricant-to-outer-fluid viscosity ratio μ~2/μ~1\tilde{\mu}_2/\tilde{\mu}_1, the capillary number Ca, the static contact angle θs\theta_s, and the filling fraction of the cavity δ\delta, we find that the effective slip is most sensitive to the parameter δ\delta. The effects of μ~2/μ~1\tilde{\mu}_2/\tilde{\mu}_1 and θs\theta_s are generally intertwined, but weakened if δ<1\delta < 1. Moreover, for an initial filling fraction δ=0.94\delta =0.94, our results show that the effective slip is nearly independent of the capillary number, when it is small. Further increasing Ca to about 0.01μ~1/μ~20.01 \tilde{\mu}_1/\tilde{\mu}_2, we identify a possible failure mode, associated with lubricants draining from the LIS, for μ~2/μ~10.1\tilde{\mu}_2/\tilde{\mu}_1 \lesssim 0.1. Very viscous lubricants (\eg μ~2/μ~1>1\tilde{\mu}_2/\tilde{\mu}_1 >1), on the other hand, are immune to such failure due to their generally larger contact line velocity.

Keywords

Cite

@article{arxiv.1805.02381,
  title  = {Effective slip over partially filled microcavities and its possible failure},
  author = {Zhouyang Ge and Hanna Holmgren and Martin Kronbichler and Luca Brandt and Gunilla Kreiss},
  journal= {arXiv preprint arXiv:1805.02381},
  year   = {2018}
}

Comments

Phys. Rev. Fluids (2018)

R2 v1 2026-06-23T01:46:54.354Z