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Hydroelastic wake on a thin elastic sheet floating...
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Hydroelastic wake on a thin elastic sheet floating on water

Abstract

We investigate the hydroelastic wake created by a perturbation moving at constant speed along a thin elastic sheet floating at the surface of deep water. Using a high-resolution cross-correlation imaging technique, we characterize the waves as a function of the perturbation speed, for different sheet thicknesses. The general theoretical expression for the dispersion relation of hydroelastic waves includes three components: gravity, bending and stretching. The bending modulus and the tension in the sheet are independently measured. Excellent agreement is found between the experimental data and the theoretical expression.

Authors

Ono-dit-Biot J-C; Trejo M; Loukiantcheko E; Lauch M; Raphaël E; Dalnoki-Veress K; Salez T

Publication date

June 19, 2018

DOI

10.48550/arxiv.1806.07472

Preprint server

arXiv

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