1. Simulating maize yields when irrigating with saline water, using the AquaCrop, SALTMED, and SWAP models

    Mohammad Hassanli; Hamed Ebrahimian; Ehsan Mohammadi; Amirreza Rahimi; Amirhossein Shokouhi;
    http://dx.doi.org/10.1016/j.agwat.2016.05.003
    AGR WATER MANAGE - 被引用次数:0 时间:2016 导出 [打开HTML->sci-hub]
  2. Modeling Maize Yield and Soil Water Content with AquaCrop Under Full and Deficit Irrigation Managements

    Seyed Hamid Ahmadi; Elnaz Mosallaeepour; Ali Akbar Kamgar-Haghighi; Ali Reza Sepaskhah;
    http://dx.doi.org/10.1007/s11269-015-0973-3
    WATER RESOUR MANAG - 被引用次数:0 时间:2015 导出 [打开HTML->sci-hub]
  3. Batch-processing of AquaCrop plug-in for rainfed maize using satellite derived Fractional Vegetation Cover data

    Abdoul-Hamid Mohamed Sallah; Bernard Tychon; Isabelle Piccard; Anne Gobin; Roel Van Hoolst; Bakary Djaby; Joost Wellens;
    http://dx.doi.org/10.1016/j.agwat.2019.03.016
    AGR WATER MANAGE - 被引用次数:0 时间:2019 导出 [打开HTML->sci-hub]
  4. A semi-quantitative approach for modelling crop response to soil fertility: evaluation of the AquaCrop procedure

    H. VAN GAELEN; A. TSEGAY; N. DELBECQUE; N. SHRESTHA; M. GARCIA; H. FAJARDO; R. MIRANDA; E. VANUYTRECHT; B. ABRHA; J. DIELS; D. RAES;
    http://dx.doi.org/10.1017/s0021859614000872
    被引用次数:0 时间:2014 导出 [打开HTML->sci-hub]
  5. AquaData and AquaGIS: Two computer utilities for temporal and spatial simulations of water-limited yield with AquaCrop

    I.J. Lorite; M. García-Vila; C. Santos; M. Ruiz-Ramos; E. Fereres;
    http://dx.doi.org/10.1016/j.compag.2013.05.010
    被引用次数:0 时间:2013 导出 [打开HTML->sci-hub]
  6. Corrigendum: Water Science and Technology 68(4), 821–828: Evaluation of the AquaCrop model for simulating yield response of winter wheat to water on the southern Loess Plateau of China, W. Zhang, W. Liu, Q. Xue and X. Han

    W. Zhang; W. Liu; Q. Xue; X. Han;
    http://dx.doi.org/10.2166/wst.2014.055
    被引用次数:0 时间:2014 导出 [打开HTML->sci-hub]
  7. Root zone soil moisture prediction models based on system identification: Formulation of the theory and validation using field and AQUACROP data

    Dilini Delgoda; Syed K. Saleem; Hector Malano; Malka N. Halgamuge;
    http://dx.doi.org/10.1016/j.agwat.2015.08.011
    AGR WATER MANAGE - 被引用次数:0 时间:2016 导出 [打开HTML->sci-hub]
  8. Sensitivity analysis of the Aquacrop and SAFYE crop models for the assessment of water limited winter wheat yield in regional scale applications

    Paolo Cosmo Silvestro; Stefano Pignatti; Hao Yang; Guijun Yang; Simone Pascucci; Fabio Castaldi; Raffaele Casa;
    http://dx.doi.org/10.1371/journal.pone.0187485
    PLOS ONE - 被引用次数:0 时间:2017 导出 [打开HTML->sci-hub]
  9. Performance evaluation of AquaCrop in simulating soil water storage, yield, and water productivity of rainfed soybeans (Glycine max L. merr) in Ile-Ife, Nigeria

    Omotayo B. Adeboye; Bart Schultz; Kenneth O. Adekalu; Krishna C. Prasad;
    http://dx.doi.org/10.1016/j.agwat.2018.11.006
    AGR WATER MANAGE - 被引用次数:0 时间:2019 导出 [打开HTML->sci-hub]
  10. Corrigendum to “Modeling malt barley water use and evapotranspiration partitioning in two contrasting rainfall years. Assessing AquaCrop and SIMDualKc models” [Agric. Water Manag. 159 (2015) 239–254...

    L.S. Pereira; P. Paredes; G.C. Rodrigues; M. Neves;
    http://dx.doi.org/10.1016/j.agwat.2015.08.017
    AGR WATER MANAGE - 被引用次数:0 时间:2016 导出 [打开HTML->sci-hub]
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