Articles | Volume 29, issue 23
https://doi.org/10.5194/hess-29-6863-2025
https://doi.org/10.5194/hess-29-6863-2025
Research article
 | 
01 Dec 2025
Research article |  | 01 Dec 2025

Projections of actual and potential evapotranspiration from downscaled high-resolution CMIP6 climate simulations in Australia

Hong Zhang, Sarah Chapman, Ralph Trancoso, Rohan Eccles, Jozef Syktus, and Nathan Toombs

Viewed

Total article views: 5,118 (including HTML, PDF, and XML)
HTML PDF XML Total Supplement BibTeX EndNote
3,689 1,248 181 5,118 330 153 217
  • HTML: 3,689
  • PDF: 1,248
  • XML: 181
  • Total: 5,118
  • Supplement: 330
  • BibTeX: 153
  • EndNote: 217
Views and downloads (calculated since 11 Apr 2025)
Cumulative views and downloads (calculated since 11 Apr 2025)

Viewed (geographical distribution)

Total article views: 5,118 (including HTML, PDF, and XML) Thereof 5,035 with geography defined and 83 with unknown origin.
Country # Views %
  • 1
1
 
 
 
 

Cited

Saved (final revised paper)

Latest update: 07 Oct 2026
Download
Short summary
In this study we evaluate the performances of observation-based and climate model-based evapotranspiration estimations and project future changes for evapotranspiration in Australia. Our results show that climate models can provide reasonably accurate estimations, compared to observation-based estimations. This study offers new insights into future water loss and demand changes in Australia with implications for agriculture production, water security, and environmental management.
Share