4.7 Article

Turbulent mixing and hydraulic control of abyssal water in the Samoan Passage

Journal

GEOPHYSICAL RESEARCH LETTERS
Volume 40, Issue 17, Pages 4668-4674

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1002/grl.50684

Keywords

mixing; hydraulics; abyss

Funding

  1. National Science Foundation [OCE-1029268, OCE-1029483]
  2. Directorate For Geosciences
  3. Division Of Ocean Sciences [1029483] Funding Source: National Science Foundation
  4. Division Of Ocean Sciences
  5. Directorate For Geosciences [1029268] Funding Source: National Science Foundation

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We report the first direct turbulence observations in the Samoan Passage (SP), a 40km wide notch in the South Pacific bathymetry through which flows most of the water supplying the North Pacific abyssal circulation. The observed turbulence is 1000 to 10,000 times typical abyssal levels strong enough to completely mix away the densest water entering the passageconfirming inferences from previous coarser temperature and salinity sections. Accompanying towed measurements of velocity and temperature with horizontal resolution of about 250m indicate the dominant processes responsible for the turbulence. Specifically, the flow accelerates substantially at the primary sill within the passage, reaching speeds as great as 0.55m s(-1). A strong hydraulic response is seen, with layers first rising to clear the sill and then plunging hundreds of meters downward. Turbulence results from high shear at the interface above the densest fluid as it descends and from hydraulic jumps that form downstream of the sill. In addition to the primary sill, other locations along the multiple interconnected channels through the Samoan Passage also have an effect on the mixing of the dense water. In fact, quite different hydraulic responses and turbulence levels are observed at seafloor features separated laterally by a few kilometers, suggesting that abyssal mixing depends sensitively on bathymetric details on small scales.

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