Articles | Volume 30, issue 15
https://doi.org/10.5194/hess-30-5145-2026
https://doi.org/10.5194/hess-30-5145-2026
Research article
 | 
14 Aug 2026
Research article |  | 14 Aug 2026

Groundwater hysteresis increasingly decouples flowing network length from streamflow as snow shifts to rain

Elijah N. Boardman, Mark S. Wigmosta, Nicole M. Fernandez, John A. Whiting, and Adrian A. Harpold

Viewed

Total article views: 3,418 (including HTML, PDF, and XML)
HTML PDF XML Total Supplement BibTeX EndNote
1,987 1,299 132 3,418 325 122 135
  • HTML: 1,987
  • PDF: 1,299
  • XML: 132
  • Total: 3,418
  • Supplement: 325
  • BibTeX: 122
  • EndNote: 135
Views and downloads (calculated since 12 Jan 2026)
Cumulative views and downloads (calculated since 12 Jan 2026)

Viewed (geographical distribution)

Total article views: 3,418 (including HTML, PDF, and XML) Thereof 3,385 with geography defined and 33 with unknown origin.
Country # Views %
  • 1
1
 
 
 
 
Latest update: 14 Aug 2026
Download
Short summary
Distributed simulations and geochemical data indicate that groundwater hysteresis dampens the elasticity of flowing stream networks. This effect is expected to become more important as intense rainfall events replace gradual snowmelt in a warmer climate.
Share