Wake sorting, selective predation and biogenic mixing: potential reasons for high turbulence in fish schools

There has been debate about animals’ contribution to ocean circulation, called biomixing, or biogenic mixing. The energy input of schooling fish is significant but the eddies may be too small; so energy is dissipated as heat before impacting oceanic structure. I suggest that high turbulence caused b...

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Main Author: Jay Willis
Format: Article
Language:English
Published: PeerJ Inc. 2013-06-01
Series:PeerJ
Subjects:
Online Access:https://peerj.com/articles/96.pdf
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author Jay Willis
author_facet Jay Willis
author_sort Jay Willis
collection DOAJ
description There has been debate about animals’ contribution to ocean circulation, called biomixing, or biogenic mixing. The energy input of schooling fish is significant but the eddies may be too small; so energy is dissipated as heat before impacting oceanic structure. I suggest that high turbulence caused by some very large aggregations of small animals has an important impact via a more direct ecosystem feedback process than overall ocean circulation. In the model presented here, large schools exhibit cooperative behavior and act like giant sieves grading zooplankton through individual swimmer’s wakes, which focus the best prey in predictable positions. Following schoolers exploit these patterns. Then schools leave, in their wakes, chaotic turbulence enhancing growth of the smaller zooplankton and phytoplankton which has been graded out by the school. The result is a different community structure of plankton than would exist without such biomixing. Changes to plankton abundance and community structure on oceanic scales over the past century are correlated to overfishing and are consistent with this concept.
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spelling doaj.art-c7b5492350db493fb010c148f3f26b982023-12-03T10:28:30ZengPeerJ Inc.PeerJ2167-83592013-06-011e9610.7717/peerj.9696Wake sorting, selective predation and biogenic mixing: potential reasons for high turbulence in fish schoolsJay Willis0Turnpenny Horsfield Associates, Southampton, UKThere has been debate about animals’ contribution to ocean circulation, called biomixing, or biogenic mixing. The energy input of schooling fish is significant but the eddies may be too small; so energy is dissipated as heat before impacting oceanic structure. I suggest that high turbulence caused by some very large aggregations of small animals has an important impact via a more direct ecosystem feedback process than overall ocean circulation. In the model presented here, large schools exhibit cooperative behavior and act like giant sieves grading zooplankton through individual swimmer’s wakes, which focus the best prey in predictable positions. Following schoolers exploit these patterns. Then schools leave, in their wakes, chaotic turbulence enhancing growth of the smaller zooplankton and phytoplankton which has been graded out by the school. The result is a different community structure of plankton than would exist without such biomixing. Changes to plankton abundance and community structure on oceanic scales over the past century are correlated to overfishing and are consistent with this concept.https://peerj.com/articles/96.pdfWake sortingEcosystem engineeringOcean turbulence
spellingShingle Jay Willis
Wake sorting, selective predation and biogenic mixing: potential reasons for high turbulence in fish schools
PeerJ
Wake sorting
Ecosystem engineering
Ocean turbulence
title Wake sorting, selective predation and biogenic mixing: potential reasons for high turbulence in fish schools
title_full Wake sorting, selective predation and biogenic mixing: potential reasons for high turbulence in fish schools
title_fullStr Wake sorting, selective predation and biogenic mixing: potential reasons for high turbulence in fish schools
title_full_unstemmed Wake sorting, selective predation and biogenic mixing: potential reasons for high turbulence in fish schools
title_short Wake sorting, selective predation and biogenic mixing: potential reasons for high turbulence in fish schools
title_sort wake sorting selective predation and biogenic mixing potential reasons for high turbulence in fish schools
topic Wake sorting
Ecosystem engineering
Ocean turbulence
url https://peerj.com/articles/96.pdf
work_keys_str_mv AT jaywillis wakesortingselectivepredationandbiogenicmixingpotentialreasonsforhighturbulenceinfishschools