Collection of Hydrologic Models, Reanalysis Datasets, and Remote Sensing Products Aggregated by Ecoregion over the CONUS from 1900 to 2018
October 9, 2026
This is accompanying data produced for the study "Implications of Model Selection: Inter-Comparison of Publicly-Available, CONUS-Extent Hydrologic Component Estimates". These datasets were converted from their primary structures (rasters and shapefiles) to EPA Ecoregions Level I. Conversion was performed by averaging timestep layers via mean area weight to produce a single vector of monthly values for each ecoregion, for each of the following hydrologic cycle components: precipitation (P), actual evapotranspiration (AET), runoff (R), snow water equivalent (SWE), rootzone soil moisture in equivalent water depth (RZSME), and rootzone soil moisture in volumetric water content (RZSMV).
Citation Information
| Publication Year | 2026 |
|---|---|
| Title | Collection of Hydrologic Models, Reanalysis Datasets, and Remote Sensing Products Aggregated by Ecoregion over the CONUS from 1900 to 2018 |
| DOI | 10.5066/P9588YM2 |
| Authors | Samuel W Saxe, William H Farmer, Jessica M Driscoll, Terri Hogue |
| Product Type | Data Release |
| Record Source | USGS Asset Identifier Service (AIS) |
| USGS Organization | Water Resources Mission Area - Headquarters |
| Rights | This work is marked with CC0 1.0 Universal |
Related
Implications of model selection: A comparison of publicly available, conterminous US-extent hydrologic component estimates Implications of model selection: A comparison of publicly available, conterminous US-extent hydrologic component estimates
Spatiotemporally continuous estimates of the hydrologic cycle are often generated through hydrologic modeling, reanalysis, or remote sensing (RS) methods and are commonly applied as a supplement to, or a substitute for, in situ measurements when observational data are sparse or unavailable. This study compares estimates of precipitation (P), actual evapotranspiration (ET), runoff (R)...
Authors
Samuel Saxe, William H. Farmer, Jessica M. Driscoll, Terri S. Hogue
William H Farmer, Ph.D. (Former Employee)
USGS Drought Science Coordinator (acting)
USGS Drought Science Coordinator (acting)
Research Physical Scientist
Research Physical Scientist
Related
Implications of model selection: A comparison of publicly available, conterminous US-extent hydrologic component estimates Implications of model selection: A comparison of publicly available, conterminous US-extent hydrologic component estimates
Spatiotemporally continuous estimates of the hydrologic cycle are often generated through hydrologic modeling, reanalysis, or remote sensing (RS) methods and are commonly applied as a supplement to, or a substitute for, in situ measurements when observational data are sparse or unavailable. This study compares estimates of precipitation (P), actual evapotranspiration (ET), runoff (R)...
Authors
Samuel Saxe, William H. Farmer, Jessica M. Driscoll, Terri S. Hogue
William H Farmer, Ph.D. (Former Employee)
USGS Drought Science Coordinator (acting)
USGS Drought Science Coordinator (acting)
Research Physical Scientist
Research Physical Scientist