Constarium
← Search

Data · dataset · 2026

Can we constrain uncertainty in hydrologic cycle projections?

Listed in National Center for Atmospheric Research

Description

Climate change intensifies the Earth's hydrologic cycle, which has far-reaching consequences including water availability, agricultural production, and electric power generation. The rate of intensification projected by state-of-the-art global climate models (GCMs) with increasing greenhouse gas emissions, however, is highly uncertain. Thackeray et al. (2018, 2018, doi.org/10.1029/2018GL079698) show that these uncertainties are related to how GCMs distribute future precipitation by either strongly increasing extreme precipitation at the cost of nonextreme events or by increasing nonextreme precipitation at the cost of extreme precipitation events.

These results could help to constrain uncertainties in future hydrologic cycle intensification, thereby improving our understanding of future water resource availability and extreme hydrologic events.

Links

Get the data

Where it is published

Catalogue records · 1

Topics

Inferred from text
Climate change science 74%
Provenance · 1 source records, 8 field assertions
SourceKeyLast seenRaw
National Center for Atmospheric Researche2b5251f-c08f-46b8-9776-9c1653db2ef610 d agoJSON v1
FieldAssertionExtractorEvidence
concepts[field].anzsrc:group:3702enrichment · data ucar edutaxonomy-embedding@1.1.0title+keywords+description (74%)
concepts[field].local:field:earth-environmentalmapping · data ucar educonnector:data_ucar_edu@1.0.0
concepts[field].local:field:ocean-atmosphericmapping · data ucar educonnector:data_ucar_edu@1.0.0
created_datesource · data ucar educonnector:data_ucar_edu@1.0.0
descriptionsource · data ucar educonnector:data_ucar_edu@1.0.0/notes
publication_datesource · data ucar educonnector:data_ucar_edu@1.0.0
titlesource · data ucar educonnector:data_ucar_edu@1.0.0/title
updated_datesource · data ucar educonnector:data_ucar_edu@1.0.0