Journal of Irrigation and Drainage Engineering · 2005 · 244 citations · 25 references
ClimatologyMeteorologyHydrometeorologyRn ValuesEnvironmental MonitoringEngineeringReference Evapotranspiration EquationsReference EvapotranspirationNet RadiationAtmospheric ConditionGeographyRadiation MeasurementClimate ModelingIrrigationWeather ForecastingMeteorological MeasurementApplied MeteorologyClimate Change
Four reference evapotranspiration (ETo) equations are compared using weather data from 37 agricultural weather stations across the state of California. The equations compared include the California Irrigation Management Information System (CIMIS) Penman equation, the Penman–Monteith equation standardized by the Food and Agriculture Organization (FAO), the Penman–Monteith equation standardized by the American Society of Civil Engineers, and the Hargreaves equation. Hourly and daily comparisons of ETo and net radiation (Rn) are made using graphics and simple linear regressions. ETo values estimated by the CIMIS Penman equation correlated very well with the corresponding values estimated by the standardized Penman–Monteith equations on both hourly and daily time steps. However, there are greater differences between the Rn values estimated by the two procedures. Although there are exceptions, the Hargreaves equation compared well to the FAO Penman–Monteith method. Spatial variability of the resulting correlations between the different equations is also assessed. Despite the wide variability of microclimates in the state, there are no visible spatial trends in correlations between the different ETo and/or Rn estimates.
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Monteith Jl · PubMed · 1965 · 4.6K citations
Principles of Environmental Physics
T R Barrass · Physics Bulletin · 1974 · 1.1K citations
Environmental System, Environmental Physics, Engineering +11
Operational Estimates of Reference Evapotranspiration
Richard G. Allen, Marvin E. Jensen, James L. Wright et al. · Agronomy Journal · 1989 · 757 citations