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Hydrology / Measurement uncertainty / Calibration / Root-mean-square deviation / Accuracy and precision / Verification and validation / Forecasting / Hydrograph / Regression model validation / Statistics / Measurement / Regression analysis


MODEL EVALUATION GUIDELINES FOR SYSTEMATIC QUANTIFICATION OF ACCURACY IN WATERSHED SIMULATIONS D. N. Moriasi, J. G. Arnold, M. W. Van Liew, R. L. Bingner, R. D. Harmel, T. L. Veith
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Document Date: 2009-11-20 15:25:16


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City

Helena / Park / El Reno / Temple / Oxford / /

Company

USDAARS Grassland Soil / Pearson / USDA-ARS Grazinglands Research Laboratory / USDA-ARS Pasture Systems / Water Research Laboratory / ASABE Member / /

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Event

Natural Disaster / /

Facility

University of Arizona / University Park / Because plant / /

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IndustryTerm

hydrologic and nonpoint-source model applications / chemical / /

Organization

American Society of Agricultural / Water Quality Planning Bureau / Soil & Water Division of ASABE / Watershed Management Research Unit / Montana Department of Environmental Quality / US Federal Reserve / USDA / University of Arizona / Environmental Protection Agency / /

Person

Michael W. Van Liew / Ronald L. Bingner / Jeffrey G. Arnold / Tamie L. Veith / R. Daren Harmel / Daniel N. Moriasi / W. Van Liew / /

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Position

Engineer / Environmental Science Specialist / author / MODEL EVALUATION GUIDELINES General / PERFORMANCE RATINGS General / Engineer / Hydrologist / Major / Engineer / Agricultural Engineer / Supervisory Agricultural Engineer / gov. Sensitivity analysis / Corresponding author / /

Product

A-9 / A-1 / /

ProvinceOrState

Texas / Pennsylvania / Montana / Oklahoma / Mississippi / Arizona / /

Region

central Texas / /

Technology

simulation / /

URL

www.brc.tamus.edu/swat/soft_baseflow / /

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