Experimental realization of broadband control of water-wave-energy amplification in chirped arrays
File(s)Rainbow_trapping_water_waves.pdf (2.81 MB)
Accepted version
Author(s)
Type
Journal Article
Abstract
Water waves in natural environments are typically broadband, nonlinear and
dynamic phenomena. Taking concepts developed for slow light in optics, we
address the challenge of designing arrays to control the spatial distribution
of wave energy, and amplify target frequencies at specified locations.
Experiments on incident waves interacting with a chirped array of eight
vertical cylinders demonstrate significant amplifications as predicted
numerically, and provide motivation for application to energy harvesting.
dynamic phenomena. Taking concepts developed for slow light in optics, we
address the challenge of designing arrays to control the spatial distribution
of wave energy, and amplify target frequencies at specified locations.
Experiments on incident waves interacting with a chirped array of eight
vertical cylinders demonstrate significant amplifications as predicted
numerically, and provide motivation for application to energy harvesting.
Date Issued
2020-06-24
Date Acceptance
2020-06-03
Citation
Physical Review Fluids, 2020, 5 (6), pp.62801(R) – 1-62801(R) – 8
ISSN
2469-990X
Publisher
American Physical Society
Start Page
62801(R) – 1
End Page
62801(R) – 8
Journal / Book Title
Physical Review Fluids
Volume
5
Issue
6
Copyright Statement
©2020 American Physical Society
Sponsor
Engineering & Physical Science Research Council (EPSRC)
The Leverhulme Trust
Identifier
http://arxiv.org/abs/1910.13103v1
Grant Number
EP/L024926/1
RF-2017-017/9
Subjects
physics.flu-dyn
physics.flu-dyn
Publication Status
Published
Article Number
062801
Date Publish Online
2020-06-24