The overturning circulation of the global ocean is critically shaped by deep-ocean mixing, which transforms cold waters sinking at high latitudes into warmer, shallower waters. The effectiveness of mixing in driving this transformation is jointly set by two factors: the intensity of turbulence near topography and the rate at which well-mixed boundary waters are exchanged with the stratified ocean interior. Here, we use innovative observations of a major branch of the overturning circulation—an abyssal boundary current in the Southern Ocean—to identify a previously undocumented mixing mechanism, by which deep-ocean waters are efficiently laundered through intensified near-boundary turbulence and boundary–interior exchange. The linchpin of th...
Water-mass transformation by turbulent mixing is a key part of the deep-ocean overturning, as it dri...
Water-mass transformation by turbulent mixing is a key part of the deep-ocean overturning, as it dri...
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attributi...
Author Posting. © National Academy of Sciences, 2019. This article is posted here by permission of N...
The overturning circulation of the global ocean is critically shaped by deep-ocean mixing, which tra...
© The Author(s), 2021. This article is distributed under the terms of the Creative Commons Attributi...
The emerging view of the abyssal circulation is that it is associated with bottom-enhanced mixing, w...
The vast amount of carbon and heat exchange between the abyssal and upper ocean and subsequently the...
Mixing of water masses from the deep ocean to the layers above can be estimated from considerations ...
To close the abyssal overturning circulation, dense bottom water has to become lighter by mixing wit...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the M...
Turbulent mixing produced by breaking of internal waves plays an important role in setting the patte...
International audienceWater-mass transformation by turbulent mixing is a key part of the deep-ocean ...
© 2020 American Meteorological Society. The emerging view of the abyssal circulation is that it is a...
For small-scale turbulence to achieve water mass transformation and thus affect the large-scale over...
Water-mass transformation by turbulent mixing is a key part of the deep-ocean overturning, as it dri...
Water-mass transformation by turbulent mixing is a key part of the deep-ocean overturning, as it dri...
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attributi...
Author Posting. © National Academy of Sciences, 2019. This article is posted here by permission of N...
The overturning circulation of the global ocean is critically shaped by deep-ocean mixing, which tra...
© The Author(s), 2021. This article is distributed under the terms of the Creative Commons Attributi...
The emerging view of the abyssal circulation is that it is associated with bottom-enhanced mixing, w...
The vast amount of carbon and heat exchange between the abyssal and upper ocean and subsequently the...
Mixing of water masses from the deep ocean to the layers above can be estimated from considerations ...
To close the abyssal overturning circulation, dense bottom water has to become lighter by mixing wit...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the M...
Turbulent mixing produced by breaking of internal waves plays an important role in setting the patte...
International audienceWater-mass transformation by turbulent mixing is a key part of the deep-ocean ...
© 2020 American Meteorological Society. The emerging view of the abyssal circulation is that it is a...
For small-scale turbulence to achieve water mass transformation and thus affect the large-scale over...
Water-mass transformation by turbulent mixing is a key part of the deep-ocean overturning, as it dri...
Water-mass transformation by turbulent mixing is a key part of the deep-ocean overturning, as it dri...
© The Author(s), 2017. This article is distributed under the terms of the Creative Commons Attributi...