Author:
Delpech Audrey,Barkan Roy,Renault Lionel,McWilliams James,Siyanbola Oladeji Q.,Buijsman Maarten C.,Arbic Brian K.
Abstract
AbstractInternal waves contain a large amount of energy in the ocean and are an important source of turbulent mixing. Ocean mixing is relevant for climate because it drives vertical transport of water, heat, carbon and other tracers. Understanding the life cycle of internal waves, from generation to dissipation, is therefore important for improving the representation of ocean mixing in climate models. Here, we provide evidence from a regional realistic numerical simulation in the northeastern Pacific that the wind can play an important role in damping internal waves through current feedback. This results in a reduction of 67% of wind power input at near-inertial frequencies in the region of study. Wind-current feedback also provides a net energy sink for internal tides, removing energy at a rate of 0.2 mW/m$$^2$$
2
on average, corresponding to 8% of the local internal tide generation at the Mendocino ridge. The temporal variability and modal distribution of this energy sink are also investigated.
Funder
National Science Foundation
Israeli Science Foundation
Centre National d’Etudes Spatiales
Agence Nationale de la Recherche
Publisher
Springer Science and Business Media LLC
Cited by
6 articles.
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