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University of Idaho

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Monthly climate and climatic water balance for global terrestrial surfaces from 1958-2015

This archive contains a dataset of high-spatial resolution (1/24°, ~4-km) monthly climate and climatic water balance for global terrestrial surfaces from 1958-2015. These data were created by using climatically aided interpolation, combining high-spatial resolution climatological normals from the WorldClim version 1.4 and version 2 datasets, with coarser resolution time varying (i.e. monthly) data from CRU Ts4.0 and JRA-55 to produce a monthly dataset of precipitation, maximum and minimum temperature, wind speed, vapor pressure, and solar radiation. TerraClimate additionally produces monthly surface water balance datasets using a water balance model that incorporates reference evapotranspiration, precipitation, temperature, and interpolated plant extractable soil water capacity.

These data were created by using climatically aided interpolation, combining high-spatial resolution climatological normals from the WorldClim version 1.4 and version 2 datasets, with coarser resolution time varying (i.e. monthly) data from CRU Ts4.0 and JRA-55 to produce a monthly dataset of precipitation, maximum and minimum temperature, wind speed, vapor pressure, and solar radiation. TerraClimate additionally produces monthly surface water balance datasets using a water balance model that incorporates reference evapotranspiration, precipitation, temperature, and interpolated plant extractable soil water capacity.

Data and Resources

FieldValue
Modified
2019-03-21
Release Date
2017-06-26
Publisher
Frequency
Monthly
Identifier
e0fd3349-4f0f-4af2-9ece-1fe6f30014a9
Spatial / Geographical Coverage Area
POLYGON ((-536.484375 -84.658260499766, -536.484375 84.942803962516, -175.078125 84.942803962516, -175.078125 -84.658260499766))
Spatial / Geographical Coverage Location
Global, Earth, World
Temporal Coverage
Thursday, January 1, 1953 - 00:00 to Sunday, December 31, 2017 - 00:00
Language
English (United States)
License
Granularity
4 kilometer
Author
John Abatzoglou, Solomon Dobrowski, Sean Parks, Katherine Hegewisch
Contact Name
Katherine Hegewisch
Contact Email
Public Access Level
Public
DOI
10.7923/G43J3B0R