Agricultural Sciences

Agricultural Sciences

ISSN Print: 2156-8553
ISSN Online: 2156-8561
www.scirp.org/journal/as
E-mail: as@scirp.org
"Evaluation of alternative methods for estimating reference evapotranspiration"
written by Daniel K. Fisher, H. C. Pringle III,
published by Agricultural Sciences, Vol.4 No.8A, 2013
has been cited by the following article(s):
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[5] Culture du café robusta (Coffea canephora): risques liés à la variabilité et au changement climatique dans le bassin de production du Moungo, Littoral-Cameroun
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[7] Characterisation of groundwater and surface water interaction in the eThekwini Metropolitan District, KwaZulu-Natal, South Africa.
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[9] CONTRIBUTION OF CLIMATE CHANGE AND HUMAN ACTIVITIES ON THE RUNOFF CHANGES IN THE UPPER CATCHMENT OF NILWALA BASIN, SRI LANKA
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[10] Global exposure of population and land‐use to meteorological droughts under different warming levels and SSPs: a CORDEX‐based study
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[11] Comparison of different empirical methods and data-driven models for estimating reference evapotranspiration in semi-arid Central Anatolian Region of Turkey
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[12] Evaluation of Valiantzas ET0 equations against FAO56-PM model in Indian semi-arid climatic conditions
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[13] Coupled carbon and oxygen isotope model for pedogenic carbonates
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[14] Assessing of evapotranspiration models using limited climatic data in Southeast Anatolian Project Region of Turkey
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[15] Evaluating evapotranspiration values in Rwanda using the FAO-56 PM, Turc, and Hargreaves-Samani equations
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[16] Recovery of phycobiliproteins and biogas from microalgae treating wastewater
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[17] Modelling the impacts of climate change on soybeans water use and yields in Ogun-Ona river basin, Nigeria
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[18] Referencia evapotranszspiráció alapú párolgás becslések hazai spárga-és szőlőültetvényeken
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[19] Modeling megech watershed aquifer vulnerability to pollution using modified DRASTIC model for sustainable groundwater management, Northwestern Ethiopia
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[20] Supplanting missing climatic inputs in classical and random forest models for estimating reference evapotranspiration in humid coastal areas of Iran
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[21] Bioremediation of emerging micropollutants in irrigation water. The alternative of microalgae-based treatments
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[22] Which oak provenances for the 22nd century in Western Europe? Dendroclimatology in common gardens
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[23] Microalgae-based bioremediation of water contaminated by pesticides in peri-urban agricultural areas
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[24] Comparative approach for global solar estimation in four typical Senegalese climatic zones
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[25] Estimation of evapotranspiration and its relationship to land use and water resources in Lufumi catchment, DR Congo
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[26] Behavior of UV Filters, UV Blockers and Pharmaceuticals in High Rate Algal Ponds Treating Urban Wastewater
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[27] Calibration of Crop Coefficients and Evapotranspiration Rates in Semi-Arid and Sub-Humid Agro climates: Impact on Crop Water Requirement
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[28] Simulating the Impacts of Climate Change on Water and Crop Productivity in Ogun-Osun River Basin, Nigeria
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[29] Evaluation of nine reference evapotranspiration models in Traghen region, Southwest of Libya
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[32] Ampirik Potansiyel Evapotranspirasyon Tahmin Yöntemlerinin Değerlendirilmesi: Uygulama Konya Kapalı Havzası
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[34] Karaman İli Potansiyel Evapotranspirasyon Tahmini
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[35] Geomorphic controls of perched groundwater interaction with natural ridge‐top depressional wetlands
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[39] Comparative study of some estimation methods of evapotranspiration in the tropical zone: case of the region of Pointe-Noire (Congo)
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[40] Calibration of the priestley-taylor evaporation model for Ethiopia
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[41] Evaluation of reference evapotranspiration methods and sensitivity analysis of climatic parameters for sub-humid sub-tropical locations in western Himalayas (India)
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[42] Soybean Irrigation Initiation in Mississippi: Yield, Soil Moisture, and Economic Response
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[43] Using water stable isotopes in the unsaturated zone to quantify recharge in two contrasted infiltration regimes
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[44] Rainwater Deficit and Irrigation Demand for Row Crops in Mississippi Blackland Prairie
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[45] Trend Analysis of Long-Term Reference Evapotranspiration and Its Components over the Korean Peninsula
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[46] Optimal irrigation scheduling under water quantity and quality constraints accounting for the stochastic character of regional weather patterns
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[47] Analysis of the Accuracy Comparison of Five Different Models of Valiantzas Equation in the Estimation of Reference Evapotranspiration
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[48] Comparative Evaluation of Different Reference Evapotranspiration Estimation Methods for Lakhimpur District of Assam, India
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[49] The study has been undertaken about the trend analysis and deterministic modelling of evapotranspiration for Southern Rajasthan (India).
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[50] Comparison of sum-of-hourly and daily time step standardized ASCE Penman-Monteith reference evapotranspiration
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[51] Evaluation of Valiantzas' Simplified Forms of the FAO-56 Penman-Monteith Reference Evapotranspiration Model in a Humid Climate
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[52] Evaluation of Reference Evapotranspiration Methods in Arid, Semiarid, and Humid Regions
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[53] Prediction of Tall Crop Reference Evapotranspiration (ETr) and Trend Analysis for Udaipur Station, India
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[54] Water (stress) models and deficit irrigation: System-theoretical description and causality mapping
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[55] Crops and farmers response to climate change a case study of assam
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[56] Predicting reference evaporation for the Ethiopian highlands
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[57] Poređenje metoda za izračunavanje referentne evapotranspiracije na području meteorološke stanice Rimski Šančevi
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[58] Estimation of evapotranspiration and its relationship to land use and water resources in Lufumi Catchment, Kinshasa, DR Congo.
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[59] Evaluation of FAO-56 Penman-Monteith Model with Limited Data and the Valiantzas Models for Estimating Grass-Reference Evapotranspiration in Sahelian Conditions
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[60] Trend analysis and forecast of precipitation, reference evapotranspiration, and rainfall deficit in the Blackland Prairie of Eastern Mississippi
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[61] Estimativa da evapotranspiração de referência padrão (Penman-Monteith FAO 56):Uma abordagem com dados meteorológicos limitados
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[63] A combined sensitivity analysis of seven potential evapotranspiration models
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[64] EVALUATION OF THE GROUNDWATER RECHARGE FOR THE DANUBIAN PLAIN (NorthERN BULGARIA) based on climatic data
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[65] AVALIAÇÃO DA ESTIMATIVA DA EVAPOTRANSPIRAÇÃO DE REFERÊNCIA POR PENMAN-MONTEITH FAO-56 USANDO DADOS METEOROLÓGICOS LIMITADOS EM FORTALEZA, CEARÁ
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[66] A decision support system (GesCoN) for managing fertigation in open field vegetable crops. Part I—methodological approach and description of the software
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[67] Disentangling the effects of feedback structure and climate on Poaceae annual airborne pollen fluctuations and the possible consequences of climate change
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[68] Yield and Economic Response of Soybean to Irrigation Initiation in Mississippi
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[69] In-season Drought Monitoring: Testing Instrumentation and Developing Methods of Measurement Analysis
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[70] Irrigation methods and scheduling in the delta region of Mississippi: current status and strategies to improve irrigation efficiency
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[72] Détermination de l'Evapotranspiration du sol (expérimentalement et à l'aide de formules) dans le cas de nano-irrigation dans les régions arides
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