Light rain exacerbates extreme humid heat

Humid heat waves pose significant risks to human health and the ecosystem. Intuitively, rainfall often alleviates extreme humid heat. However, here we show that light rain often accompanies extreme humid heat, exacerbating its frequency and intensity, especially over arid and semi-arid regions compa...

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Veröffentlicht in:Nature communications 2024-08, Vol.15 (1), p.7326-9, Article 7326
Hauptverfasser: Zhang, Zhanjie, Wang, Yong, Zhang, Guang J., Xing, Cheng, Xia, Wenwen, Yang, Mengmiao
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Sprache:eng
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Zusammenfassung:Humid heat waves pose significant risks to human health and the ecosystem. Intuitively, rainfall often alleviates extreme humid heat. However, here we show that light rain often accompanies extreme humid heat, exacerbating its frequency and intensity, especially over arid and semi-arid regions compared to no rain and moderate-to-heavy rain cases. This is because light rain does not dramatically reduce solar radiation but increases near-surface humidity through enhanced surface evaporation. The water replenishment from light rain as well as a shallower planetary boundary layer is crucial for consecutive extremes where there are commonly sporadic drizzle days amidst several rain-free days. These extremes last longer than rain-free extremes. Current global climate models (GCMs) overestimate light rain. After reducing this bias in a GCM, underestimations of humid heat waves in energy-limited regions and overestimations in water-limited regions are largely alleviated. These findings underscore the underappreciated impact of light rain on extreme humid heat. The authors show that the frequency, intensity, and duration of extreme humid heat are exacerbated by light rain through the enhancement of the total enthalpy flux and the shallowing of the planetary boundary layer.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-024-51778-9