English

Droplet at the Corner of a V-Shaped Fiber

Fluid Dynamics 2025-09-18 v1

Abstract

A fundamental question in the physics of droplet--fiber interactions is: What is the maximum droplet volume a fiber can retain? While this problem has been studied for horizontal fibers and at the apex Λ\Lambda-shaped bent fibers, it remains less explored for V-shaped bent fibers, despite their demonstrated advantages in engineering applications such as fog harvesting. This work investigates the capability of V-shaped fibers in retaining droplets against gravity. An analytical model to predict the maximum droplet volume on V-shaped fibers is developed based on free energy analysis, and validated against experimental data from five liquid--fiber pairs. The dependence of the maximum droplet volume on α\alpha can be reasonably captured by the function cosβ/cos(βα/2)\cos\beta/\cos\left(\beta-\alpha/2\right), where β\beta denotes the droplet's off-axis angle. As α\alpha increases from 00^\circ to 180180^\circ, the maximum droplet volume slightly decreases before entering a broad transition region around α40\alpha \approx 40^\circ--100100^\circ, and then increases at larger α\alpha.

Keywords

Cite

@article{arxiv.2509.13632,
  title  = {Droplet at the Corner of a V-Shaped Fiber},
  author = {Yi Zhang and Apurav Tambe and Zhao Pan},
  journal= {arXiv preprint arXiv:2509.13632},
  year   = {2025}
}