Deep-Cycle Turbulence in the Upper Pacific Equatorial Ocean: Characterization by LES and Heat Flux Parameterization

Author:

Pham Hieu T.1ORCID,Sarkar Sutanu12,Smyth William D.3,Moum James N.3,Warner Sally J.4

Affiliation:

1. a Mechanical and Aerospace Engineering, University of California, San Diego, La Jolla, California

2. b Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California

3. c College of Earth, Ocean and Atmospheric Science, Oregon State University, Corvallis, Oregon

4. d Department of Physics and Environmental Studies, Brandeis University, Waltham, Massachusetts

Abstract

Abstract Observations in the Pacific Equatorial Undercurrents (EUC) show that the nighttime deep-cycle turbulence (DCT) in the marginal-instability (MI) layer of the EUC exhibits seasonal variability that can modulate heat transport and sea surface temperature. Large-eddy simulations (LES), spanning a wide range of control parameters, are performed to identify the key processes that influence the turbulent heat flux at multiple time scales ranging from turbulent (minutes to hours) to daily to seasonal. The control parameters include wind stress, convective surface heat flux, shear magnitude, and thickness of the MI layer. In the LES, DCT occurs in discrete bursts during the night, exhibits high temporal variability within a burst, and modulates the mixed layer depth. At the daily time scale, turbulent heat flux generally increases with increasing wind stress, MI-layer shear, or nighttime convection. Convection is found to be important to mixing under weak wind, weak shear conditions. A parameterization for the daily averaged turbulent heat flux is developed from the LES suite to infer the variability of heat flux at the seasonal time scale. The LES-based parameterized heat flux, which takes into account the effects of all control parameters, exhibits a seasonal variability that is similar to the observed heat flux from the χ-pods.

Funder

Division of Ocean Sciences

Publisher

American Meteorological Society

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