Rogue waves: from nonlinear Schrödinger breather solutions to sea-keeping test.
Under suitable assumptions, the nonlinear dynamics of surface gravity waves can be modeled by the one-dimensional nonlinear Schrödinger equation. Besides traveling wave solutions like solitons, this model admits also breather solutions that are now considered as prototypes of rogue waves in ocean. W...
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2013
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oai:doaj.org-article:b029989ea2f74e6b82105e5e948283062021-11-18T07:58:42ZRogue waves: from nonlinear Schrödinger breather solutions to sea-keeping test.1932-620310.1371/journal.pone.0054629https://doaj.org/article/b029989ea2f74e6b82105e5e948283062013-01-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23405086/?tool=EBIhttps://doaj.org/toc/1932-6203Under suitable assumptions, the nonlinear dynamics of surface gravity waves can be modeled by the one-dimensional nonlinear Schrödinger equation. Besides traveling wave solutions like solitons, this model admits also breather solutions that are now considered as prototypes of rogue waves in ocean. We propose a novel technique to study the interaction between waves and ships/structures during extreme ocean conditions using such breather solutions. In particular, we discuss a state of the art sea-keeping test in a 90-meter long wave tank by creating a Peregrine breather solution hitting a scaled chemical tanker and we discuss its potential devastating effects on the ship.Miguel OnoratoDavide PromentGünther ClaussMarco KleinPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 8, Iss 2, p e54629 (2013) |
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Medicine R Science Q Miguel Onorato Davide Proment Günther Clauss Marco Klein Rogue waves: from nonlinear Schrödinger breather solutions to sea-keeping test. |
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Under suitable assumptions, the nonlinear dynamics of surface gravity waves can be modeled by the one-dimensional nonlinear Schrödinger equation. Besides traveling wave solutions like solitons, this model admits also breather solutions that are now considered as prototypes of rogue waves in ocean. We propose a novel technique to study the interaction between waves and ships/structures during extreme ocean conditions using such breather solutions. In particular, we discuss a state of the art sea-keeping test in a 90-meter long wave tank by creating a Peregrine breather solution hitting a scaled chemical tanker and we discuss its potential devastating effects on the ship. |
format |
article |
author |
Miguel Onorato Davide Proment Günther Clauss Marco Klein |
author_facet |
Miguel Onorato Davide Proment Günther Clauss Marco Klein |
author_sort |
Miguel Onorato |
title |
Rogue waves: from nonlinear Schrödinger breather solutions to sea-keeping test. |
title_short |
Rogue waves: from nonlinear Schrödinger breather solutions to sea-keeping test. |
title_full |
Rogue waves: from nonlinear Schrödinger breather solutions to sea-keeping test. |
title_fullStr |
Rogue waves: from nonlinear Schrödinger breather solutions to sea-keeping test. |
title_full_unstemmed |
Rogue waves: from nonlinear Schrödinger breather solutions to sea-keeping test. |
title_sort |
rogue waves: from nonlinear schrödinger breather solutions to sea-keeping test. |
publisher |
Public Library of Science (PLoS) |
publishDate |
2013 |
url |
https://doaj.org/article/b029989ea2f74e6b82105e5e94828306 |
work_keys_str_mv |
AT miguelonorato roguewavesfromnonlinearschrodingerbreathersolutionstoseakeepingtest AT davideproment roguewavesfromnonlinearschrodingerbreathersolutionstoseakeepingtest AT guntherclauss roguewavesfromnonlinearschrodingerbreathersolutionstoseakeepingtest AT marcoklein roguewavesfromnonlinearschrodingerbreathersolutionstoseakeepingtest |
_version_ |
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