Have a personal or library account? Click to login
An Irrigation Homogenity Assessment of a Variable Rate Sprinkler Irrigation Cover

An Irrigation Homogenity Assessment of a Variable Rate Sprinkler Irrigation

Open Access
|May 2021

References

  1. Boluwade, A., Madramootoo, C., Yari, A. (2016). Application of unsupervised clustering techniques for management zone delineation: Case study of variable rate irrigation in Southern Alberta, Canada. Journal of Irrigation and Drainage Engineering, 142(1), 1–8.10.1061/(ASCE)IR.1943-4774.0000936
  2. Colaizzi, P. D., O’Shaughnessy, S. A., Evett, S. R., Mounce, R. B. (2017). Crop evapotranspiration calculation using infrared thermometers aboard center pivots. Agricultural Water Management, (187), 173–189.10.1016/j.agwat.2017.03.016
  3. FAO (2016). AQUASTAT website. http://www.fao.org/nr/water/aquastat/didyouknow/index3.stm Query date: 2018.12.
  4. Iglesias, R., Ortega, E., Batanero, G., Quintas, L. (2010). Water reuse in Spain: data overview and costs estimation of suitable treatment trains. Desalination 263, 1–10.10.1016/j.desal.2010.06.038
  5. Irmak, S., Odhiambo, O. L., Kranz, L. W., Eisenhauer, E. D. (2011). Irrigation Efficiency and Uniformity, and Crop Water Use Efficiency. Biological Systems Engineering: Papers and Publications, (451) 8.
  6. Jolánkai, M., Kassai, M. K., Tarnawa, Á., Pósa, B., Birkás, M. (2018). Impact of precipitation and temperature on the grain and protein yield of wheat (Triticum aestivum L) varieties. Időjárás, 122(1), 31–40.10.28974/idojaras.2018.1.3
  7. Karmeli, D. (1978). Estimating sprinkler distribution pattern using linear regression. Transactions of the ASAE, (21), 682–686.10.13031/2013.35367
  8. Kellis, M., Kalavrouziotis, I. K., Gikas, P. (2013). Review of wastewater reuse in the Mediterranean countries, focusing on regulations and policies for municipal and industrial applications. Glob. Nest J., 15, 333–350.10.30955/gnj.000936
  9. Kruse, E. G. (1978). Describing Irrigation Efficiency and Uniformity. Journal of the Irrigation and Drainage Division, 104(1), 35–41.10.1061/JRCEA4.0001190
  10. MET (2019). website. https://www.met.hu/eghajlat/magyarorszag_eghajlata/altalanos_eghajlati_jellemzes/csapadek/Query date: 2019. 07.
  11. Nemzeti Vízstratégia (2017). Nemzeti Vízstratégia (Kvassay Jenő Terv). In eng.: National Water Strategy (Jenő Kvassay Plan) (140 p.).
  12. Raine, S. R., Meyer, W. S., Rassam, D. W., Hutson, J. L., Cook, J. F. (2007). Soil-water and solute movement under precision irrigation: Knowledge gaps for managing sustainable root zones. Irrigation Science, 26(1), 91–100.10.1007/s00271-007-0075-y
  13. Smith, R. J., Baillie, J. N. (2009). Defining precision irrigation: A new approach to irrigation management. National Centre for Engineering in Agriculture and Cooperative Research Centre for Irrigation Futures (pp. 18–21).
  14. Szalai, S. (2009). Drought Tendencies in Hungary and its Impacts on the Agricultural Production. Cereal Research Communications, (37), 501–504.
  15. Topak, R., Suheri, S., Ciftci, N., Acar, B. (2005). Performance evaluation of sprinkler irrigation in a semi-arid area. Pakistan Journal of Biological Sciences, (8), 97–103.
  16. Yari, A., Madramootoo, A. C., Woods, A., Shelley-Adamchuk, I. V. (2017). Performance Evaluation of Constant Versus Variable Rate Irrigation. Irrigation and Drainage, 66(4), 501–509.10.1002/ird.2131
DOI: https://doi.org/10.2478/ahr-2021-0002 | Journal eISSN: 1338-5259 | Journal ISSN: 1335-2563
Language: English
Page range: 8 - 11
Published on: May 21, 2021
Published by: Slovak University of Agriculture in Nitra
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2021 Andrea Szabó, János Tamás, Attila Nagy, published by Slovak University of Agriculture in Nitra
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.