Mediterranean Overflow Water (MOW) Simulation Using a Coupled Multiple-Grid Mediterranean Sea/North Atlantic Ocean Model

Abstract

A z-level, 4th-order-accurate ocean model is applied in six two-way-coupled grids spanning the Mediterranean Sea and North Atlantic Ocean (MEDiNA). Resolutions vary from 1/4 deg in central North Atlantic to 1/24 deg in Strait of Gibraltar region. This allows the MEDiNA model to efficiently resolve small features (e.g., Strait of Gibraltar) in a multibasin, multiscale model. Such small features affect all scales because of nonlinearity and low dissipation. The grid coupling using one coarse grid overlap is nearly seamless without intergrid sponge layers. No instant convective adjustment or other highly diffusive process is used. The deep water in the 1/8 deg Mediterranean Sea grid is formed by the resolved flows that emulate subgrid-scale processes directly. Downslope migration of Mediterranean Overflow Water (MOW) water involves dense water flowing away from the bottom laterally over bottom stairsteps in the z-level model, thus flowing over less dense underlying water. Without excessively water mass-diluting process, the advection dominates the downs lope migration of thin, dense MOW in the simulation. The model results show realistic MOW migration to the observed equilibrium depth, followed by lateral spreading near that depth. The results are also consistent with the climatology along 43 deg N, where the MOW hugs a steep shelfslope centered at 1 km depth and then spreads westward, with the salinity core (S > 35.7) reaching 18 deg W. This study clearly restores z-level models to a competitive status doing density current simulations.

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Document Details

Document Type
Technical Report
Publication Date
Jul 22, 2008
Accession Number
ADA488862

Entities

People

  • Avichal Mehra
  • David E. Dietrich
  • Maitane Olabarrieta
  • Malcolm J. Bowman
  • Maria Liste
  • Raul Medina
  • Steve A. Piacsek
  • Yu-Heng Tseng

Organizations

  • United States Naval Research Laboratory

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Atlantic Ocean
  • Boundary Layer
  • Climate Change
  • Coastal Regions
  • Deep Water
  • Geography
  • Greenhouse Effect
  • Grids
  • Iberian Peninsula
  • Mediterranean Sea
  • North Atlantic Ocean
  • Oceanography
  • Oceans
  • Regions
  • Simulations
  • Terrain
  • Topography

Fields of Study

  • Environmental science

Readers

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  • Ocean-Atmosphere Mesoscale Modeling, Data Assimilation, and Flux Boundary Layers
  • Oceanography.