Scinovex
article Open AccessTop 1% cited

Global Abyssal Mixing Inferred from Lowered ADCP Shear and CTD Strain Profiles

Journal of Physical Oceanography · 2006 · Vol. 36(8) · pp. 1553–1576
Eric KunzeEric FiringJulia M. HummonT. K. ChereskinAndreas M. Thurnherr

Abstract

Abstract Internal wave–wave interaction theories and observations support a parameterization for the turbulent dissipation rate ɛ and eddy diffusivity K that depends on internal wave shear 〈Vz2〉 and strain 〈ξz2〉 variances. Its latest incarnation is applied to about 3500 lowered ADCP/CTD profiles from the Indian, Pacific, North Atlantic, and Southern Oceans. Inferred diffusivities K are functions of latitude and depth, ranging from 0.03 × 10−4 m2 s−1 within 2° of the equator to (0.4–0.5) × 10−4 m2 s−1 at 50°–70°. Diffusivities K also increase with depth in tropical and subtropical waters. Diffusivities below 4500-m depth exhibit a peak of 0.7 × 10−4 m2 s−1 between 20° and 30°, latitudes where semidiurnal parametric subharmonic instability is expected to be active. Turbulence is highly heterogeneous. Though the bulk of the vertically integrated dissipation ∫ɛ is contributed from the main pycnocline, hotspots in ∫ɛ show some correlation with small-scale bottom roughness and near-bottom flow at sites where strong surface tidal dissipation resulting from tide–topography interactions has been implicated. Average vertically integrated dissipation rates are 1.0 mW m−2, lying closer to the 0.8 mW m−2 expected for a canonical (Garrett and Munk) internal wave spectrum than the global-averaged deep-ocean surface tide loss of 3.3 mW m−2.

Oceanographic and Atmospheric ProcessesOcean Waves and Remote SensingTropical and Extratropical Cyclones ResearchGeologyPycnoclineEquatorInternal waveDownwellingDissipationInternal tideOceanographyTurbulenceLatitude

Funding

  • National Science Foundation
Citations
485
FWCI
12.62
field-weighted impact
References
83
Percentile
99%
vs. same field & year
Citations per year
Cited by
Global Ocean Meridional Overturning
Journal of Physical Oceanography · 2007 · 797 citations
References
Estimates of the Local Rate of Vertical Diffusion from Dissipation Measurements
Journal of Physical Oceanography · 1980 · 1,997 citations
Finescale Parameterizations of Turbulent Dissipation
Journal of Physical Oceanography · 1995 · 419 citations
The Role of Internal Tides in Mixing the Deep Ocean
Journal of Physical Oceanography · 2002 · 468 citations
Parameter Sensitivity of Primitive Equation Ocean General Circulation Models
Journal of Physical Oceanography · 1987 · 514 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Global Abyssal Mixing Inferred from Lowered ADCP Shear and CTD Strain Profiles · Scinovex