The moisture origin of dew: Insights from three sites with contrasting climatic conditions

Abstract Dew is one of the important moisture sources in many arid and semiarid regions. The knowledge of moisture origin of dew under various climatic conditions is still lacking. Isotopic variations can preserve information about moisture origin and formation mechanisms. Therefore, the isotopic co...

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Published in:Hydrological Processes
Main Authors: Tian, Chao, Wang, Lixin, Li, Fadong, Zhang, Xiao, Jiao, Wenzhe, Medici, Marie‐Gabrielle, Farai Kaseke, Kudzai, Beysens, Daniel
Other Authors: National Natural Science Foundation of China, National Science Foundation
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2023
Subjects:
Online Access:http://dx.doi.org/10.1002/hyp.14902
https://onlinelibrary.wiley.com/doi/pdf/10.1002/hyp.14902
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spelling crwiley:10.1002/hyp.14902 2024-06-02T08:11:38+00:00 The moisture origin of dew: Insights from three sites with contrasting climatic conditions Tian, Chao Wang, Lixin Li, Fadong Zhang, Xiao Jiao, Wenzhe Medici, Marie‐Gabrielle Farai Kaseke, Kudzai Beysens, Daniel National Natural Science Foundation of China National Science Foundation 2023 http://dx.doi.org/10.1002/hyp.14902 https://onlinelibrary.wiley.com/doi/pdf/10.1002/hyp.14902 en eng Wiley http://creativecommons.org/licenses/by-nc/4.0/ http://creativecommons.org/licenses/by-nc/4.0/ Hydrological Processes volume 37, issue 6 ISSN 0885-6087 1099-1085 journal-article 2023 crwiley https://doi.org/10.1002/hyp.14902 2024-05-03T10:42:36Z Abstract Dew is one of the important moisture sources in many arid and semiarid regions. The knowledge of moisture origin of dew under various climatic conditions is still lacking. Isotopic variations can preserve information about moisture origin and formation mechanisms. Therefore, the isotopic compositions of dew and precipitation (δ 2 H, δ 18 O, δ 17 O, d ‐excess, lc ‐excess and 17 O‐excess) were investigated at three sites with different climatic conditions (i.e., Gobabeb with extremely dry climate, Nice with Mediterranean climate and Indianapolis with humid continental climate). The results showed that there were three types of dew at Gobabeb: advective dew, groundwater‐derived dew, and shallow soil water‐derived dew, accounting for 27.3%, 45.4% and 27.3% of the dew events, respectively. The ultimate moisture sources of advective dew and the other two types of dew at Gobabeb were from the South Atlantic Ocean and a mixture of the Indian and South Atlantic Oceans, respectively. Dew in Nice included ocean‐derived dew from the North Atlantic Ocean with local evapotranspiration replenishment, and local‐derived dew, mainly from the continental Europe and Mediterranean Sea, accounting for 39.1% and 60.9% of the dew events, respectively. All the Indianapolis dew were likely local‐derived dew. Based on the moisture origins, the future dew trends were speculated under global warming. Dew frequencies at Gobabeb and Indianapolis under future climates are uncertain due to the concurrent increases in atmospheric water vapour and temperature. The local‐derived dew in Nice would likely decrease due to the decreasing precipitation and increasing drought, and the ocean‐derived dew under future climates is uncertain. This study provides a practical method to distinguish dew moisture sources, and such information is useful for future prediction of dew trends under climate change. Article in Journal/Newspaper North Atlantic South Atlantic Ocean Wiley Online Library Indian Hydrological Processes 37 6
institution Open Polar
collection Wiley Online Library
op_collection_id crwiley
language English
description Abstract Dew is one of the important moisture sources in many arid and semiarid regions. The knowledge of moisture origin of dew under various climatic conditions is still lacking. Isotopic variations can preserve information about moisture origin and formation mechanisms. Therefore, the isotopic compositions of dew and precipitation (δ 2 H, δ 18 O, δ 17 O, d ‐excess, lc ‐excess and 17 O‐excess) were investigated at three sites with different climatic conditions (i.e., Gobabeb with extremely dry climate, Nice with Mediterranean climate and Indianapolis with humid continental climate). The results showed that there were three types of dew at Gobabeb: advective dew, groundwater‐derived dew, and shallow soil water‐derived dew, accounting for 27.3%, 45.4% and 27.3% of the dew events, respectively. The ultimate moisture sources of advective dew and the other two types of dew at Gobabeb were from the South Atlantic Ocean and a mixture of the Indian and South Atlantic Oceans, respectively. Dew in Nice included ocean‐derived dew from the North Atlantic Ocean with local evapotranspiration replenishment, and local‐derived dew, mainly from the continental Europe and Mediterranean Sea, accounting for 39.1% and 60.9% of the dew events, respectively. All the Indianapolis dew were likely local‐derived dew. Based on the moisture origins, the future dew trends were speculated under global warming. Dew frequencies at Gobabeb and Indianapolis under future climates are uncertain due to the concurrent increases in atmospheric water vapour and temperature. The local‐derived dew in Nice would likely decrease due to the decreasing precipitation and increasing drought, and the ocean‐derived dew under future climates is uncertain. This study provides a practical method to distinguish dew moisture sources, and such information is useful for future prediction of dew trends under climate change.
author2 National Natural Science Foundation of China
National Science Foundation
format Article in Journal/Newspaper
author Tian, Chao
Wang, Lixin
Li, Fadong
Zhang, Xiao
Jiao, Wenzhe
Medici, Marie‐Gabrielle
Farai Kaseke, Kudzai
Beysens, Daniel
spellingShingle Tian, Chao
Wang, Lixin
Li, Fadong
Zhang, Xiao
Jiao, Wenzhe
Medici, Marie‐Gabrielle
Farai Kaseke, Kudzai
Beysens, Daniel
The moisture origin of dew: Insights from three sites with contrasting climatic conditions
author_facet Tian, Chao
Wang, Lixin
Li, Fadong
Zhang, Xiao
Jiao, Wenzhe
Medici, Marie‐Gabrielle
Farai Kaseke, Kudzai
Beysens, Daniel
author_sort Tian, Chao
title The moisture origin of dew: Insights from three sites with contrasting climatic conditions
title_short The moisture origin of dew: Insights from three sites with contrasting climatic conditions
title_full The moisture origin of dew: Insights from three sites with contrasting climatic conditions
title_fullStr The moisture origin of dew: Insights from three sites with contrasting climatic conditions
title_full_unstemmed The moisture origin of dew: Insights from three sites with contrasting climatic conditions
title_sort moisture origin of dew: insights from three sites with contrasting climatic conditions
publisher Wiley
publishDate 2023
url http://dx.doi.org/10.1002/hyp.14902
https://onlinelibrary.wiley.com/doi/pdf/10.1002/hyp.14902
geographic Indian
geographic_facet Indian
genre North Atlantic
South Atlantic Ocean
genre_facet North Atlantic
South Atlantic Ocean
op_source Hydrological Processes
volume 37, issue 6
ISSN 0885-6087 1099-1085
op_rights http://creativecommons.org/licenses/by-nc/4.0/
http://creativecommons.org/licenses/by-nc/4.0/
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