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Hot extremes have become drier in the United States Southwest

Author

Listed:
  • Karen A. McKinnon

    (University of California)

  • Andrew Poppick

    (Carleton College)

  • Isla R. Simpson

    (National Center for Atmospheric Research)

Abstract

The impacts of summer heat extremes are mediated by humidity. Increases in temperatures due to human-caused climate change are generally expected to increase specific humidity; however, it remains unclear how humidity extremes may change, especially in climatologically dry (low-humidity) regions. Here we show that specific humidity on dry days during summer (defined here as July–September) has decreased over the past seven decades in the United States Southwest, and that the greatest decreases co-occur with the hottest temperatures. Hot, dry summers have anomalously low evapotranspiration that is linked to low summer soil moisture. The recent decrease in summer soil moisture is explained by declines in June soil moisture, whereas the interannual variability is controlled by summer precipitation. Future projections of hot, dry days in the Southwest are uncertain due to the large spread in the Coupled Model Intercomparison Project phase 6 (CMIP6) trends in soil moisture and precipitation through 2100.

Suggested Citation

  • Karen A. McKinnon & Andrew Poppick & Isla R. Simpson, 2021. "Hot extremes have become drier in the United States Southwest," Nature Climate Change, Nature, vol. 11(7), pages 598-604, July.
  • Handle: RePEc:nat:natcli:v:11:y:2021:i:7:d:10.1038_s41558-021-01076-9
    DOI: 10.1038/s41558-021-01076-9
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    Cited by:

    1. Hamish Clarke & Rachael H. Nolan & Victor Resco Dios & Ross Bradstock & Anne Griebel & Shiva Khanal & Matthias M. Boer, 2022. "Forest fire threatens global carbon sinks and population centres under rising atmospheric water demand," Nature Communications, Nature, vol. 13(1), pages 1-10, December.
    2. Zhang, Yu & Hao, Zengchao & Feng, Sifang & Zhang, Xuan & Hao, Fanghua, 2022. "Changes and driving factors of compound agricultural droughts and hot events in eastern China," Agricultural Water Management, Elsevier, vol. 263(C).

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