Optimizing Spectral Wave Estimates with Adjoint-Based Sensitivity Maps

Abstract

A discrete numerical adjoint has recently been developed for the stochastic wave model SWAN. In the present study, this adjoint code is used to construct spectral sensitivity maps for two nearshore domains. The maps display the correlations of spectral energy levels throughout the domain with the observed energy levels at a selected location or region of interest (LOI/ROI), providing a full spectrum of values at all locations in the domain. We investigate the effectiveness of sensitivity maps based on significant wave height (Hs) in determining alternate offshore instrument deployment sites when a chosen nearshore location or region is inaccessible. Wave and bathymetry datasets are employed from one shallower, small-scale domain (Duck, NC) and one deeper, larger-scale domain (San Diego, CA). The effects of seasonal changes in wave climate, errors in bathymetry, and multiple assimilation points on sensitivity map shapes and model performance are investigated. Model accuracy is evaluated by comparing spectral statistics as well as with an RMS skill score, which estimates a mean model data error across all spectral bins. Results indicate that data assimilation from identified high-sensitivity alternate locations consistently improves model performance at nearshore LOIs, while assimilation from low-sensitivity locations results in lesser or no improvement. Use of sub-sampled or alongshore-averaged bathymetry has a domain-specific effect on model performance when assimilating from a high-sensitivity alternate location.

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Document Details

Document Type
Technical Report
Publication Date
Feb 18, 2014
Accession Number
ADA603141

Entities

People

  • Jay Veeramony
  • Mark D. Orzech
  • Stylianos Flampouris

Organizations

  • United States Naval Research Laboratory

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Accuracy
  • Assimilation
  • Bathymetry
  • Deployment
  • Energy Levels
  • Errors
  • Frequency
  • High Resolution
  • Low Resolution
  • Offshore
  • Regions
  • Research Facilities
  • Shores
  • Spectra
  • Statistics
  • Test Sets
  • Wave Power

Readers

  • Atmospheric Science/Meteorology
  • Coastal Oceanography
  • Computational Modeling and Simulation