Impact of land use changes and global warming on extreme precipitation patterns in the Maritime Continent

Abstract Land use changes (LUC) and global warming (GW) significantly impact the Maritime Continent’s (MC) hydro-climate, but their effects on extreme precipitation events are underexplored. This study investigates the impacts of LUC and GW on wet and dry extremes in the MC using Community Earth Sys...

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Main Authors: Jie Hsu, Chao-An Chen, Chia-Wei Lan, Chun-Lien Chiang, Chun-Hung Li, Min-Hui Lo
Format: Article
Language:English
Published: Nature Portfolio 2025-01-01
Series:npj Climate and Atmospheric Science
Online Access:https://doi.org/10.1038/s41612-024-00883-z
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author Jie Hsu
Chao-An Chen
Chia-Wei Lan
Chun-Lien Chiang
Chun-Hung Li
Min-Hui Lo
author_facet Jie Hsu
Chao-An Chen
Chia-Wei Lan
Chun-Lien Chiang
Chun-Hung Li
Min-Hui Lo
author_sort Jie Hsu
collection DOAJ
description Abstract Land use changes (LUC) and global warming (GW) significantly impact the Maritime Continent’s (MC) hydro-climate, but their effects on extreme precipitation events are underexplored. This study investigates the impacts of LUC and GW on wet and dry extremes in the MC using Community Earth System Model (CESM)simulations, analyzing 55 years for LUC and 200 years for GW. We find that LUC-induced deforestation increases surface warming, enhancing atmospheric instability and favoring local convection, leading to more frequent heavy precipitation. Meanwhile, GW amplifies the atmosphere’s water-holding capacity, further intensifying wet extremes. Our findings reveal a “wet-get-wetter, dry-get-drier” pattern driven by different mechanisms: dynamic processes primarily influence wet extremes under LUC, while changes in evapotranspiration control dry extremes. In contrast, under GW, wet extremes are driven by dynamic processes, while dry extremes are influenced by reduced moisture availability and weakened atmospheric circulation. This highlights the need for land management to address rising extreme risks.
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publishDate 2025-01-01
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series npj Climate and Atmospheric Science
spelling doaj-art-c6438a78fe4f4cd0bc29e19623b96ca12025-01-12T12:13:27ZengNature Portfolionpj Climate and Atmospheric Science2397-37222025-01-01811810.1038/s41612-024-00883-zImpact of land use changes and global warming on extreme precipitation patterns in the Maritime ContinentJie Hsu0Chao-An Chen1Chia-Wei Lan2Chun-Lien Chiang3Chun-Hung Li4Min-Hui Lo5Department of Atmospheric Sciences, National Taiwan UniversityNational Science and Technology Center for Disaster ReductionDepartment of Atmospheric Sciences, National Taiwan UniversityDepartment of Atmospheric Sciences, National Taiwan UniversityDepartment of Atmospheric Sciences, National Taiwan UniversityDepartment of Atmospheric Sciences, National Taiwan UniversityAbstract Land use changes (LUC) and global warming (GW) significantly impact the Maritime Continent’s (MC) hydro-climate, but their effects on extreme precipitation events are underexplored. This study investigates the impacts of LUC and GW on wet and dry extremes in the MC using Community Earth System Model (CESM)simulations, analyzing 55 years for LUC and 200 years for GW. We find that LUC-induced deforestation increases surface warming, enhancing atmospheric instability and favoring local convection, leading to more frequent heavy precipitation. Meanwhile, GW amplifies the atmosphere’s water-holding capacity, further intensifying wet extremes. Our findings reveal a “wet-get-wetter, dry-get-drier” pattern driven by different mechanisms: dynamic processes primarily influence wet extremes under LUC, while changes in evapotranspiration control dry extremes. In contrast, under GW, wet extremes are driven by dynamic processes, while dry extremes are influenced by reduced moisture availability and weakened atmospheric circulation. This highlights the need for land management to address rising extreme risks.https://doi.org/10.1038/s41612-024-00883-z
spellingShingle Jie Hsu
Chao-An Chen
Chia-Wei Lan
Chun-Lien Chiang
Chun-Hung Li
Min-Hui Lo
Impact of land use changes and global warming on extreme precipitation patterns in the Maritime Continent
npj Climate and Atmospheric Science
title Impact of land use changes and global warming on extreme precipitation patterns in the Maritime Continent
title_full Impact of land use changes and global warming on extreme precipitation patterns in the Maritime Continent
title_fullStr Impact of land use changes and global warming on extreme precipitation patterns in the Maritime Continent
title_full_unstemmed Impact of land use changes and global warming on extreme precipitation patterns in the Maritime Continent
title_short Impact of land use changes and global warming on extreme precipitation patterns in the Maritime Continent
title_sort impact of land use changes and global warming on extreme precipitation patterns in the maritime continent
url https://doi.org/10.1038/s41612-024-00883-z
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