4.7 Article

Evaluation of Using Remote Sensing Evapotranspiration Data in SWAT

期刊

WATER RESOURCES MANAGEMENT
卷 32, 期 3, 页码 985-996

出版社

SPRINGER
DOI: 10.1007/s11269-017-1850-z

关键词

Evapotranspiration; Stream flow; MODIS; SWAT; Remote sensing

资金

  1. AFRI competitive grant award from USDA/NIFA [2013-67020-21407, 2017-67020-26375]
  2. Special Research Initiatives of the Mississippi Agricultural and Forestry Experiment Station at Mississippi State University
  3. Mississippi Delta Joint Water Management District
  4. USGS

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This study applied a time series evapotranspiration (ET) data derived from the remote sensing to evaluate Soil and Water Assessment Tool (SWAT) model calibration, which is a unique method. The SWAT hydrologic model utilized monthly stream flow data from two US Geological Survey (USGS) stations within the Big Sunflower River Watershed (BSRW) in Northwestern, Mississippi. Surface energy balance algorithm for land (SEBAL), which utilized MODerate Resolution Imaging Spectro-radiometer (MODIS) to generate monthly ET time series data images were evaluated with the SWAT model. The SWAT hydrological model was calibrated and validated using monthly stream flow data with the default, flow only, ET only, and flow-ET modeling scenarios. The flow only and ET only modeling scenarios showed equally good model performances with the coefficient of determination (R-2) and Nash Sutcliffe Efficiency (NSE) from 0.71 to 0.86 followed by flow-ET only scenario with the R-2 and NSE from 0.66 to 0.83, and default scenario with R-2 and NSE from 0.39 to 0.78 during model calibration and validation at Merigold and Sunflower gage stations within the watershed. The SWAT model over-predicted ET when compared with the Modis-based ET. The ET-based ET had the closest ET prediction (similar to 8% over-prediction) as followed by flow-ET-based ET (similar to 16%), default-based ET (similar to 27%) and flow-based ET (similar to 47%). The ET-based modeling scenario demonstrated consistently good model performance on streamflow and ET simulation in this study. The results of this study demonstrated use of Modis-based remote sensing data to evaluate the SWAT model streamflow and ET calibration and validation, which can be applied in watersheds with the lack of meteorological data.

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