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Technical note: Including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates

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Published in:Hydrology and Earth System Sciences
Format: Online Article RSS Article
Published: 2026
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container_title Hydrology and Earth System Sciences
description
discipline_display Physical Sciences
discipline_facet Physical Sciences
format Online Article
RSS Article
genre Journal Article
id rss_article:42202
institution FRELIP
journal_source_facet Hydrology and Earth System Sciences
publishDate 2026
publishDateSort 2026
record_format rss_article
spellingShingle Technical note: Including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates
Earth Sciences
Earth Sciences
Physical Sciences
sub_discipline_display Earth Sciences
sub_discipline_facet Earth Sciences
subject_display Earth Sciences
Earth Sciences
Physical Sciences
Earth Sciences
Earth Sciences
Physical Sciences
subject_facet Earth Sciences
Earth Sciences
Physical Sciences
title Technical note: Including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates
title_auth Technical note: Including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates
title_full Technical note: Including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates
title_fullStr Technical note: Including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates
title_full_unstemmed Technical note: Including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates
title_short Technical note: Including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates
title_sort technical note: including non-evaporative fluxes enhances the accuracy of isotope-based soil evaporation estimates
topic Earth Sciences
Earth Sciences
Physical Sciences
url https://doi.org/10.5194/hess-30-1951-2026