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- W1985100738 abstract "The ASCE-EWRI Penman-Monteith (ASCE PM) combination equation was recommended by the American Society of Civil Engineers–Environmental and Water Resources Institute as the standard equation for estimating reference evapotranspiration (ETo). The standardized model was intended to simplify and clarify the presentation and application of the method; however, it requires numerous inputs that frequently are not available at most weather stations. In this study, comparisons were made between daily ETo estimates from five different ETo approaches using limited data to those computed with the full-form ASCE PM equation during the growing season in northeast Louisiana. Procedures to estimate missing data were followed when limited weather inputs were available. The results revealed that the differences between ETo obtained with complete and limited data were influenced by the underlying surface, the weather conditions during the study, and the application of empirical methods to determine missing inputs. The mean absolute error (MAE) and root mean square error (RMSE) were less than 0.83 and 0.99 mm·d−1, respectively, whereras low correlation was found through the coefficient of determination R2. Overall, the reduced data set ASCE PMSP using wind speed data from a nearby station provided better results (MAE∶0.56 mm·d−1, R2∶0.64, Mean ratio∶0.98) when compared with the ASCE PMW2, Hargreaves-Samani, Turc, and Priestley-Taylor methods. The radiation-based equations tended to underestimate ETo by as much as 10%, whereas the temperature-based Hargreaves model overestimated ETo by 8% during the growing season." @default.
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- W1985100738 date "2013-04-01" @default.
- W1985100738 modified "2023-09-27" @default.
- W1985100738 title "Evaluation of Daily Reference Evapotranspiration Methods as Compared with the ASCE-EWRI Penman-Monteith Equation Using Limited Weather Data in Northeast Louisiana" @default.
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- W1985100738 doi "https://doi.org/10.1061/(asce)ir.1943-4774.0000523" @default.
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