Snow-eater heat waves of the western United States

Science Advances 5 Aug 2026
  • Date (DD-MM-YYYY)

    21-08-2026 to 21-11-2026

    Available on-demand until 21st November 2026

  • Cost

    Free

  • Education type

    Publication

  • CPD subtype

    On-demand

Abrupt snowmelt, triggered by rain-on-snow events or “snow-eater heat waves,” can cause flooding, initiate or accelerate snow drought, and affect water availability. However, the characteristics (e.g., area, duration, and frequency), impacts, and trends of snow-eater heat waves have received little attention. To address this gap, we developed a method to identify snow-eater heat waves and estimate their melt potential using 20th Century Reanalysis version 3 air temperature data, the TempestExtremes algorithm, and an operational snowmelt model (SNOW-17) across 1850–2015. Melt season snow-eater heat waves typically last 3 to 5 days, with three to five events, doubling snowmelt rates. Seven of 11 spring superfloods are shown to coincide with snow-eater heat waves. Since the 1850s, snow-eater heat waves have increased in area and frequency, decreased in duration, and shifted earlier in the melt season. Incorporating snow-eater heat-wave impacts into SNOW-17 enhances extreme melt estimates, improving water management support tools.

Contact details

Education Provider

American Association for the Advancement of Science (AAAS)

67 active educational opportunities

1200 New York Avenue NW, Washington DC

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