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Effect of a surface tension imbalance on a partly submerged cylinder

Fluid Dynamics 2019-07-15 v2 Biological Physics Chemical Physics

Abstract

We perform a static analysis of a circular cylinder that forms a barrier between surfactant-laden and surfactant-free portions of a liquid-gas interface. In addition to determining the general implications of the balances for forces and torques, we quantify how the imbalance Δγ=γaγb\Delta\gamma=\gamma_a-\gamma_b between the uniform surface tension γa\gamma_a of the surfactant-free portion of the interface and the uniform surface tension γb\gamma_b of the surfactant-laden portion of the interface influences the load-bearing capacity of a hydrophobic cylinder. Moreover, we demonstrate that the difference between surface tensions on either side of a cylinder with a cross-section of arbitrary shape induces a horizontal force component fhf^h equal to Δγ\Delta \gamma in magnitude, when measured per unit length of the cylinder. With an energetic argument, we show that this relation also applies to rod-like barriers with cross-sections of variable shape. In addition, we apply our analysis to amphiphilic Janus cylinders and we discuss practical implications of our findings for Marangoni propulsion and surface pressure measurements.

Keywords

Cite

@article{arxiv.1702.03161,
  title  = {Effect of a surface tension imbalance on a partly submerged cylinder},
  author = {Stoffel D. Janssens and Vikash Chaurasia and Eliot Fried},
  journal= {arXiv preprint arXiv:1702.03161},
  year   = {2019}
}