Graded resonator arrays for spatial frequency separation and amplification of water waves

A structure capable of substantially amplifying water waves over a broad range of frequencies at selected locations is proposed. The structure consists of a small number of C-shaped cylinders in a line array, with the cylinder properties graded along the array. Using linear potential-flow theory, it...

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Veröffentlicht in:Journal of fluid mechanics 2018-11, Vol.854, Article R4
Hauptverfasser: Bennetts, Luke G., Peter, Malte A., Craster, Richard V.
Format: Artikel
Sprache:eng
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Zusammenfassung:A structure capable of substantially amplifying water waves over a broad range of frequencies at selected locations is proposed. The structure consists of a small number of C-shaped cylinders in a line array, with the cylinder properties graded along the array. Using linear potential-flow theory, it is shown that the energy carried by a plane incident wave is amplified within specified cylinders for wavelengths comparable to the array length and for a range of incident directions. Transfer-matrix analysis is used to attribute the large amplifications to excitation of local Rayleigh–Bloch waves and gradual slowing down of their group velocity along the array.
ISSN:0022-1120
1469-7645
DOI:10.1017/jfm.2018.648