Three Dimensional Dynamics of Freshwater Lenses in the Oceans Near Surface Layer

Abstract

Convective rains in the Intertropical Convergence Zone produce lenses of freshened water on the ocean surface. Due to significant density differences between the freshened and saltier seawater, strong pressure gradients develop, resulting in lateral spreading of freshwater lenses in the form of gravity currents. Gravity currents inherently involve three-dimensional dynamics. As a type of organized structure, gravity currents may also interact with, and be shaped by, the ambient oceanic and atmospheric environment. Among the important environmental factors are background stratification and wind stress. Under certain conditions, a resonant interaction between a propagating freshwater lens and internal waves in the underlying halocline (the barrier layer) may develop, while interaction with the wind stress may produce an asymmetry in the freshwater lens and associated mixing. These two types of interactions working in concert may explain the series of sharp frontal interfaces observed in association with freshwater lenses during the Tropical Ocean Global Atmosphere Coupled Ocean Atmosphere Response Experiment (TOGA COARE). We conducted a series of numerical simulations using computational fluid dynamics tools. These numerical experiments were designed to elucidate the relationship between vertical and horizontal fluxes of salinity under various environmental conditions and the potential impact of these fluxes on the barrier layer and Aquarius and Soil Moisture and Ocean Salinity (SMOS) satellite image formations.

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Document Details

Document Type
Technical Report
Publication Date
Sep 14, 2016
Accession Number
AD1004226

Entities

People

  • Alexander Soloviev
  • Atsushi Fujimura
  • Silvia Matt

Organizations

  • United States Naval Research Laboratory

Tags

Communities of Interest

  • Space

DTIC Thesaurus Topics

  • Atmospheric Sciences
  • Boundaries
  • Buoyancy
  • Computational Fluid Dynamics
  • Fluid Dynamics
  • Fluids
  • Fresh Water
  • High Resolution
  • Internal Waves
  • Oceanography
  • Oceans
  • Physical Oceanography
  • Simulations
  • Stratified Fluids
  • Synthetic Aperture Radar
  • Three Dimensional
  • Wind Stress

Fields of Study

  • Environmental science

Readers

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

Technology Areas

  • Space