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Natural hazards in Australia: heatwaves

Author

Listed:
  • S. E. Perkins-Kirkpatrick

    (UNSW)

  • C. J. White

    (University of Tasmania
    University of Tasmania)

  • L. V. Alexander

    (UNSW)

  • D. Argüeso

    (UNSW)

  • G. Boschat

    (Melbourne University)

  • T. Cowan

    (CSIRO Oceans and Atmosphere
    The University of Edinburgh)

  • J. P. Evans

    (UNSW)

  • M. Ekström

    (CSIRO Land and Water)

  • E. C. J. Oliver

    (University of Tasmania
    University of Tasmania)

  • A. Phatak

    (Curtin University)

  • A. Purich

    (UNSW
    CSIRO Oceans and Atmosphere)

Abstract

As part of a special issue on natural hazards, this paper reviews the current state of scientific knowledge of Australian heatwaves. Over recent years, progress has been made in understanding both the causes of and changes to heatwaves. Relationships between atmospheric heatwaves and large-scale and synoptic variability have been identified, with increasing trends in heatwave intensity, frequency and duration projected to continue throughout the 21st century. However, more research is required to further our understanding of the dynamical interactions of atmospheric heatwaves, particularly with the land surface. Research into marine heatwaves is still in its infancy, with little known about driving mechanisms, and observed and future changes. In order to address these knowledge gaps, recommendations include: focusing on a comprehensive assessment of atmospheric heatwave dynamics; understanding links with droughts; working towards a unified measurement framework; and investigating observed and future trends in marine heatwaves. Such work requires comprehensive and long-term collaboration activities. However, benefits will extend to the international community, thus addressing global grand challenges surrounding these extreme events.

Suggested Citation

  • S. E. Perkins-Kirkpatrick & C. J. White & L. V. Alexander & D. Argüeso & G. Boschat & T. Cowan & J. P. Evans & M. Ekström & E. C. J. Oliver & A. Phatak & A. Purich, 2016. "Natural hazards in Australia: heatwaves," Climatic Change, Springer, vol. 139(1), pages 101-114, November.
  • Handle: RePEc:spr:climat:v:139:y:2016:i:1:d:10.1007_s10584-016-1650-0
    DOI: 10.1007/s10584-016-1650-0
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    1. Daniel E. Horton & Nathaniel C. Johnson & Deepti Singh & Daniel L. Swain & Bala Rajaratnam & Noah S. Diffenbaugh, 2015. "Contribution of changes in atmospheric circulation patterns to extreme temperature trends," Nature, Nature, vol. 522(7557), pages 465-469, June.
    2. Runtong Zhang & Zhenji Zhang & Kecheng Liu & Juliang Zhang (ed.), 2015. "Liss 2013," Springer Books, Springer, number 978-3-642-40660-7, September.
    3. Benjamin Quesada & Robert Vautard & Pascal Yiou & Martin Hirschi & Sonia I. Seneviratne, 2012. "Asymmetric European summer heat predictability from wet and dry southern winters and springs," Nature Climate Change, Nature, vol. 2(10), pages 736-741, October.
    4. Boris Orlowsky & Sonia Seneviratne, 2012. "Global changes in extreme events: regional and seasonal dimension," Climatic Change, Springer, vol. 110(3), pages 669-696, February.
    5. E. M. Fischer & U. Beyerle & R. Knutti, 2013. "Robust spatially aggregated projections of climate extremes," Nature Climate Change, Nature, vol. 3(12), pages 1033-1038, December.
    6. Noah Diffenbaugh & Martin Scherer, 2011. "Observational and model evidence of global emergence of permanent, unprecedented heat in the 20th and 21st centuries," Climatic Change, Springer, vol. 107(3), pages 615-624, August.
    7. Thomas Wernberg & Dan A. Smale & Fernando Tuya & Mads S. Thomsen & Timothy J. Langlois & Thibaut de Bettignies & Scott Bennett & Cecile S. Rousseaux, 2013. "An extreme climatic event alters marine ecosystem structure in a global biodiversity hotspot," Nature Climate Change, Nature, vol. 3(1), pages 78-82, January.
    8. Fernando P. Lima & David S. Wethey, 2012. "Three decades of high-resolution coastal sea surface temperatures reveal more than warming," Nature Communications, Nature, vol. 3(1), pages 1-13, January.
    9. Zhenji Zhang & Zuojun Max Shen & Juliang Zhang & Runtong Zhang (ed.), 2015. "Liss 2014," Springer Books, Springer, edition 127, number 978-3-662-43871-8, September.
    10. Myles Allen, 2003. "Liability for climate change," Nature, Nature, vol. 421(6926), pages 891-892, February.
    11. Kerstin K. Zander & Wouter J. W. Botzen & Elspeth Oppermann & Tord Kjellstrom & Stephen T. Garnett, 2015. "Heat stress causes substantial labour productivity loss in Australia," Nature Climate Change, Nature, vol. 5(7), pages 647-651, July.
    12. Peter A. Stott & D. A. Stone & M. R. Allen, 2004. "Human contribution to the European heatwave of 2003," Nature, Nature, vol. 432(7017), pages 610-614, December.
    13. Scott D Foster & David A Griffin & Piers K Dunstan, 2014. "Twenty Years of High-Resolution Sea Surface Temperature Imagery around Australia: Inter-Annual and Annual Variability," PLOS ONE, Public Library of Science, vol. 9(7), pages 1-13, July.
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    3. An Vu & Shannon Rutherford & Dung Phung, 2019. "Heat Health Prevention Measures and Adaptation in Older Populations—A Systematic Review," IJERPH, MDPI, vol. 16(22), pages 1-22, November.
    4. Steven Jeffery Crimp & David Gobbett & Philip Kokic & Uday Nidumolu & Mark Howden & Neville Nicholls, 2016. "Recent seasonal and long-term changes in southern Australian frost occurrence," Climatic Change, Springer, vol. 139(1), pages 115-128, November.
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    8. Small, Felicity & Mehmet, Michael & Miles, Morgan P., 2019. "Applying a causal ambush marketing framework to social media: The ‘Pleasure is Diverse’ campaign and the Australian marriage amendment," Australasian marketing journal, Elsevier, vol. 27(3), pages 149-157.
    9. Seth Westra & Christopher J. White & Anthony S. Kiem, 2016. "Introduction to the special issue: historical and projected climatic changes to Australian natural hazards," Climatic Change, Springer, vol. 139(1), pages 1-19, November.
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