the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Can whales mix the ocean?
Abstract. Ocean mixing influences global climate and enhances primary productivity by transporting nutrient rich water into the euphotic zone. The contribution of the swimming biosphere to diapycnal mixing in the ocean has been hypothesised to occur on scales similar to that of tides or winds, however, the extent to which this contributes to nutrient transport and stimulates primary productivity has not been explored. Here, we introduce a novel method to estimate the diapycnal diffusivity that occurs as a result of a sperm whale swimming through a pycnocline. Nutrient profiles from the Hawaiian Ocean are used to further estimate the amount of nitrogen transported into the euphotic zone and the primary productivity stimulated as a result. We estimate that the 80 sperm whales that travel through an area of 104 km2 surrounding Hawaii increase diapycnal diffusivity by 10–6 m2 s−1 which results in the flux of 105 kg of nitrogen into the euphotic zone each year. This nitrogen input subsequently stimulates 6 × 105 kg of carbon per year. The nutrient input of swimming sperm whales is modest compared to dominant modes of nutrient transport such as nitrogen fixation but occurs more consistently and thus may provide the nutrients necessary to enable phytoplankton growth and survival in the absence of other seasonal and daily nutrient inputs.
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RC C2887: 'Referee's comment on 'Can Whales Mix the Ocean'', Anonymous Referee #1, 01 Aug 2012
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AC C8732: 'Response to reviewer #1', Trish Lavery, 04 Mar 2013
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AC C8732: 'Response to reviewer #1', Trish Lavery, 04 Mar 2013
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RC C3099: 'Can whales mix the ocean?', Andre Visser, 09 Aug 2012
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AC C8735: 'Response to reviewer #2', Trish Lavery, 04 Mar 2013
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AC C8735: 'Response to reviewer #2', Trish Lavery, 04 Mar 2013
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RC C3604: 'Reviewer Comment', Anonymous Referee #3, 27 Aug 2012
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AC C8737: 'Response to reviewer #3', Trish Lavery, 04 Mar 2013
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AC C8737: 'Response to reviewer #3', Trish Lavery, 04 Mar 2013
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RC C3704: 'Can whales mix the ocean - review', Eric D'Asaro, 02 Sep 2012
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AC C8739: 'Response to Prof. D'Asaro', Trish Lavery, 04 Mar 2013
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AC C8739: 'Response to Prof. D'Asaro', Trish Lavery, 04 Mar 2013


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RC C2887: 'Referee's comment on 'Can Whales Mix the Ocean'', Anonymous Referee #1, 01 Aug 2012
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AC C8732: 'Response to reviewer #1', Trish Lavery, 04 Mar 2013
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AC C8732: 'Response to reviewer #1', Trish Lavery, 04 Mar 2013
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RC C3099: 'Can whales mix the ocean?', Andre Visser, 09 Aug 2012
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AC C8735: 'Response to reviewer #2', Trish Lavery, 04 Mar 2013
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AC C8735: 'Response to reviewer #2', Trish Lavery, 04 Mar 2013
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RC C3604: 'Reviewer Comment', Anonymous Referee #3, 27 Aug 2012
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AC C8737: 'Response to reviewer #3', Trish Lavery, 04 Mar 2013
-
AC C8737: 'Response to reviewer #3', Trish Lavery, 04 Mar 2013
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RC C3704: 'Can whales mix the ocean - review', Eric D'Asaro, 02 Sep 2012
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AC C8739: 'Response to Prof. D'Asaro', Trish Lavery, 04 Mar 2013
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AC C8739: 'Response to Prof. D'Asaro', Trish Lavery, 04 Mar 2013
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Cited
4 citations as recorded by crossref.
- Illustrating the hidden economic, social and ecological values of global forage fish resources M. Konar et al. 10.1016/j.resconrec.2019.104456
- Numerical simulation of momentumless turbulent wake dynamics in linearly stratified medium O. Voropaeva et al. 10.1134/S1810232816010082
- Biologically Generated Mixing in the Ocean E. Kunze 10.1146/annurev-marine-010318-095047
- Ecosystem Function and Services of Aquatic Predators in the Anthropocene N. Hammerschlag et al. 10.1016/j.tree.2019.01.005