Global heat stress intensification and its expanding footprint on the human population
Интенсификация теплового стресса в мире и её расширяющийся след для человеческого населения
2026-06-22
SCID: 54.1/mxg8j8dy
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Universal Thermal Climate Indexcompound daytime–nighttime eventsheat stress dayshuman population exposuretropical nights
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Abstract (AI)
Abstract Climate warming is driving more frequent and intense heat extremes. Yet, changes in heat stress, the leading cause of weather-related mortality, remain poorly quantified at the global scale. Here, using the Universal Thermal Climate Index, we assess heat stress globally since 1950, examining daytime extremes, nocturnal heat and compound daytime–nighttime events, revealing a pronounced, multidimensional intensification. Extreme ‘feels-like’ temperatures have become more frequent on every continent, and the spatial footprint of hazardous heat has expanded, exposing previously unaffected regions. Heat stress days and tropical nights have increased, with some regions experiencing up to 50 additional heat stress days annually and an extended heat stress season. The hottest nights of the year are warming faster (0.32 °C per decade) than the hottest days (0.27 °C), and compound events are more frequent, severe and prolonged. Population exposure to dangerous heat has increased markedly, driven by intensifying heat stress in addition to population growth.
Key Findings
1
Compound daytime–nighttime heat events have become more frequent, more severe, and more prolonged.
2
Extreme 'feels-like' temperatures have become more frequent on every continent and hazardous heat spatial footprint has expanded into previously unaffected regions.
3
Global heat stress has intensified multidimensionally since 1950, affecting daytime extremes, nocturnal heat, and compound day–night events.
4
Population exposure to dangerous heat has increased markedly due to both intensifying heat stress and population growth.
5
Some regions now experience up to 50 additional heat stress days per year and an extended heat stress season.
6
The hottest nights are warming faster (0.32 °C per decade) than the hottest days (0.27 °C per decade).
Research Object
Global human population exposure to heat stress assessed via the Universal Thermal Climate Index (UTCI) from 1950 to present
Research Subject
Changes in heat stress extremes and their spatiotemporal footprint including daytime extremes, nocturnal heat, compound day–night events, trends in hottest days/nights, increased heat stress days/tropical nights, season lengthening, and resulting population exposure
Publication Details
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2026-06-22
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