Assessing the accuracy of OpenET satellite-based evapotranspiration data to support water resource and land management applications

Author:

Volk John M.ORCID,Huntington Justin L.,Melton Forrest S.,Allen Richard,Anderson Martha,Fisher Joshua B.ORCID,Kilic Ayse,Ruhoff AndersonORCID,Senay Gabriel B.,Minor Blake,Morton Charles,Ott Thomas,Johnson LeeORCID,Comini de Andrade Bruno,Carrara Will,Doherty Conor T.,Dunkerly ChristianORCID,Friedrichs MacKenzieORCID,Guzman Alberto,Hain Christopher,Halverson Gregory,Kang YanghuiORCID,Knipper KyleORCID,Laipelt Leonardo,Ortega-Salazar Samuel,Pearson Christopher,Parrish Gabriel E. L.,Purdy Adam,ReVelle Peter,Wang TianxinORCID,Yang Yun

Abstract

AbstractRemotely sensed evapotranspiration (ET) data offer strong potential to support data-driven approaches for sustainable water management. However, practitioners require robust and rigorous accuracy assessments of such data. The OpenET system, which includes an ensemble of six remote sensing models, was developed to increase access to field-scale (30 m) ET data for the contiguous United States. Here we compare OpenET outputs against data from 152 in situ stations, primarily eddy covariance flux towers, deployed across the contiguous United States. Mean absolute error at cropland sites for the OpenET ensemble value is 15.8 mm per month (17% of mean observed ET), mean bias error is −5.3 mm per month (6%) and r2 is 0.9. Results for shrublands and forested sites show higher inter-model variability and lower accuracy relative to croplands. High accuracy and multi-model convergence across croplands demonstrate the utility of a model ensemble approach, and enhance confidence among ET data practitioners, including the agricultural water resource management community.

Publisher

Springer Science and Business Media LLC

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