English

An integrated theoretical, experimental, and numerical study of small-amplitude water waves

Fluid Dynamics 2025-07-25 v1

Abstract

We introduce an inexpensive experimental setup for analyzing free-surface water waves: a 1m1\,\mathrm{m}-long tabletop flume made from perspex, driven by a variable-frequency piston wavemaker built from Lego. Using mobile-phone video capture, we collect experimental data and compare it with predictions from linear gravity-capillary wave theory and with multiphase simulations performed in OpenFOAM. We find excellent quantitative agreement across all three approaches. Our setup may be valuable for students with a background in Mathematical Modelling who lack hands-on laboratory experience. To explore this, we report on a survey of students who completed an integrated theoretical, experimental, and computational project. While students found the experience enhanced their learning of Fluid Mechanics, they also noted the need for better support in setting up and running CFD simulations.

Keywords

Cite

@article{arxiv.2507.18403,
  title  = {An integrated theoretical, experimental, and numerical study of small-amplitude water waves},
  author = {Lennon Ó Náraigh and Nicolas Farault and Nicola Young},
  journal= {arXiv preprint arXiv:2507.18403},
  year   = {2025}
}

Comments

32 pages, 18 figures