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Global dryland aridity changes indicated by atmospheric, hydrological, and vegetation observations at meteorological stations.

Authors :
Shi, Haiyang
Luo, Geping
Hellwich, Olaf
He, Xiufeng
Kurban, Alishir
De Maeyer, Philippe
Van de Voorde, Tim
Source :
Hydrology & Earth System Sciences; 2023, Vol. 27 Issue 24, p4551-4562, 12p
Publication Year :
2023

Abstract

In the context of global warming, an increase in atmospheric aridity and global dryland expansion under the future climate has been expected in previous studies. However, this conflicts with observed greening over drylands and the insignificant increase in hydrological and ecological aridity from the ecohydrology perspective. Combining climatic, hydrological, and vegetation data, this study evaluated global dryland aridity changes at meteorological stations from 2003 to 2019. A decoupling between atmospheric, hydrological, and vegetation aridity was found. Atmospheric aridity represented by the vapor pressure deficit (VPD) increased, hydrological aridity indicated by machine-learning-based precipitation minus evapotranspiration (P - ET) data did not change significantly, and ecological aridity represented by the leaf area index (LAI) decreased. P - ET showed nonsignificant changes in most of the dominant combinations of the VPD, LAI, and P - ET. This study highlights the added value of using station-scale data to assess dryland change as a complement to results based on coarse-resolution reanalysis data and land surface models. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10275606
Volume :
27
Issue :
24
Database :
Complementary Index
Journal :
Hydrology & Earth System Sciences
Publication Type :
Academic Journal
Accession number :
174582803
Full Text :
https://doi.org/10.5194/hess-27-4551-2023