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A hierarchical approach to defining marine heatwaves

  • Alistair Hobday
  • , Lisa V. Alexander
  • , Sarah E. Perkins
  • , Dan Smale
  • , Sandra C. Straub
  • , Eric C. J. Oliver
  • , Jessica Benthuysen
  • , Michael T. Burrows
  • , Markus G. Donat
  • , Ming Feng
  • , Neil J. Holbrook
  • , Philippa Moore
  • , Hillary A. Scannell
  • , Alex Sen Gupta
  • , Thomas Wernberg
  • Commonwealth Scientific and Industrial Research Organisation
  • UNSW Sydney
  • University of Tasmania
  • Australian Institute of Marine Science
  • University of Washington
  • NOAA Pacific Marine Environmental Laboratory
  • Marine Biological Association of the United Kingdom
  • The University of Western Australia
  • Scottish Association For Marine Science

Research output: Contribution to journalArticlepeer-review

1991 Citations (SciVal)
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Abstract

Marine heatwaves (MHWs) have been observed around the world and are expected to increase in intensity and frequency under anthropogenic climate change. A variety of impacts have been associated with these anomalous events, including shifts in species ranges, local extinctions and economic impacts on seafood industries through declines in important fishery species and impacts on aquaculture. Extreme temperatures are increasingly seen as important influences on biological systems, yet a consistent definition of MHWs does not exist. A clear definition will facilitate retrospective comparisons between MHWs, enabling the synthesis and a mechanistic understanding of the role of MHWs in marine ecosystems. Building on research into atmospheric heatwaves, we propose both a general and specific definition for MHWs, based on a hierarchy of metrics that allow for different data sets to be used in identifying MHWs. We generally define a MHW as a prolonged discrete anomalously warm water event that can be described by its duration, intensity, rate of evolution, and spatial extent. Specifically, we consider an anomalously warm event to be a MHW if it lasts for five or more days, with temperatures warmer than the 90th percentile based on a 30-year historical baseline period. This structure provides flexibility with regard to the description of MHWs and transparency in communicating MHWs to a general audience. The use of these metrics is illustrated for three 21st century MHWs; the northern Mediterranean event in 2003, the Western Australia ‘Ningaloo Niño’ in 2011, and the northwest Atlantic event in 2012. We recommend a specific quantitative definition for MHWs to facilitate global comparisons and to advance our understanding of these phenomena
Original languageEnglish
Pages (from-to)227-238
JournalProgress in Oceanography
Volume141
Early online date06 Jan 2016
DOIs
Publication statusPublished - 01 Feb 2016

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 13 - Climate Action
    SDG 13 Climate Action
  2. SDG 14 - Life Below Water
    SDG 14 Life Below Water

Keywords

  • estreme events
  • sea surface temperature
  • anomalous events
  • temperature anomaly
  • heatwaves

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