Accession Number : ADA624420


Title :   Frequency Width in Predictions of Windsea Spectra and the Role of the Nonlinear Solver


Descriptive Note : Journal article


Corporate Author : NAVAL RESEARCH LAB STENNIS DETACHMENT STENNIS SPACE CENTER MS OCEANOGRAPHY DIV


Personal Author(s) : Rogers, W E ; Van Vledder, Gerbrant Ph


Full Text : http://www.dtic.mil/get-tr-doc/pdf?AD=ADA624420


Report Date : 20 Dec 2012


Pagination or Media Count : 11


Abstract : ln this paper, the accuracy of predictions of the narrowness in frequency space of elevation spectra for wind-generated surface gravity waves is evaluated with the specific objective of determining the impact of the method for computing quadruplet interactions, S.M. Alternate metrics are presented for concise quantification of this narrowness and applied to a case study: a 10-day duration hindcast for Lake Michigan during 2002 conducted using the Discrete Interaction Approximation (DIA) for5 M. Under-prediction of frequency narrowness relative to observational data is clearly identifiable using non-concise methods. Two of four concise methods for quantifying spectral narrowness are found to adequately register this bias. By comparing with a hindcast that uses an expensive, exact solution for four-wave nonlinear interactions, it is determined that much of the bias can be attributed to the approximation used for the solution of these interactions in the first hindcast, which corresponds to the DIA, which is the solution method used today in nearly all routine, phase-averaged wave modeling.


Descriptors :   *OCEAN WAVES , APPROXIMATION(MATHEMATICS) , GRAVITY WAVES , PREDICTIONS , SURFACE WAVES , WIND


Subject Categories : Physical and Dynamic Oceanography


Distribution Statement : APPROVED FOR PUBLIC RELEASE