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Recurrence in truncated Boussinesq models for nonlinear waves in shallow waterThe rapid spatial recurrence of weakly nonlinear and weakly dispersive progressive shallow-water waves is examined using a numerical integration technique on the discretized and truncated form of the Boussinesq equations. This study primarily examines recurrence in wave fields with Ursell number O(1) and characterizes the sensitivity of recurrence to initial spectral shape and number of allowed frequency modes. It is shown that the rapid spatial recurrence is not an inherent property of the considered Boussinesq systems for evolution distances of 10-50 wavelengths. The main result of the study is that highly truncated Boussinesq models of resonant shallow-water ocean surface gravity waves predict rapid multiple recurrence cycles, but that this is an artifact dependent on the number of allowed modes. For initial conditions consisting of essentially all energy concentrated in a single mode, damping of the recurrence cycles increases as the number of low-power background modes increases. When more than 32 modes are allowed, the recurrence behavior is relatively insensitive to the number of allowed modes.
Document ID
19900055334
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Elgar, Steve
(Washington State University Pullman, United States)
Freilich, M. H.
(JPL Pasadena, CA, United States)
Guza, R. T.
(California, University Scripps Institution of Oceanography, La Jolla, United States)
Date Acquired
August 14, 2013
Publication Date
July 15, 1990
Publication Information
Publication: Journal of Geophysical Research
Volume: 95
ISSN: 0148-0227
Subject Category
Oceanography
Accession Number
90A42389
Distribution Limits
Public
Copyright
Other

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