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  4. Variations in land-atmosphere coupling during drought-heatwave events
 
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Variations in land-atmosphere coupling during drought-heatwave events

Journal
Communications Earth & Environment
Journal Volume
7
Journal Issue
1
ISSN
2662-4435
Date Issued
2026-01-05
Author(s)
Yoon, Donghyuck
Chen, Jan-Huey
Hsu, Hsin  
Findell, Kirsten L.
DOI
10.1038/s43247-025-02977-9
URI
https://www.scopus.com/pages/publications/105026707138
https://scholars.lib.ntu.edu.tw/handle/123456789/736025
Abstract
Droughts and heatwaves are linked through different land-atmosphere coupling pathways. While high temperatures and depleted soil moisture (SM) characterize all drought-heatwave events, latent heat flux (LHF) reveals the dominant forcing mechanism driving these events. Our grid-based analysis of six drought-heatwave events since 2000 shows spatially inhomogeneous land-atmosphere coupling associated with surface flux partitioning. Atmospherically driven regimes, characterized by increased LHF following hot temperature anomalies, accounted for the majority of the 2022 East Asia event (64.8%). Land surface-driven regimes, exhibiting LHF deficits following dry SM anomalies, were most prevalent in the 2023 Central America event (45.4%). Using a medium-range forecast model, we reproduced both events and showed that the water-limited (2023 Central America) case exhibits a lead-time predictability improvement of about 2-3 days relative to the energy-limited (2022 East Asia) case. These results highlight the limits of domain-averaged coupling in the model and the potential to improve the model forecasted drought-heatwaves when incorporate regime-based characteristics.
Subjects
drought
heat wave
land surface
land-atmosphere interaction
latent heat flux
temperature anomaly
Publisher
Springer Science and Business Media LLC
Type
journal article

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