Have a personal or library account? Click to login
Application and Evaluation of Performance Quality of Hose-Reel Irrigation Machine Cover

Application and Evaluation of Performance Quality of Hose-Reel Irrigation Machine

Open Access
|Nov 2019

References

  1. ABBASPOUR-GILANDEH, Y. – HASANKHANI-GHAVAM, F. – SHAHGOLI, G. – RASOOLI SHARABIANI, V. – ABBASPOURGILANDEH, M. 2018. Investigation of the effect of soil moisture content, contact surface material and soil texture on soil friction and soil adhesion coefficients. In Acta Technologica Agriculturae, vol. 21. no. 2, pp. 44–50.10.2478/ata-2018-0009
  2. EL-WAHED, M. A. – MEDICI, M. – LORENZINI, G. 2016. Sprinkler irrigation uniformity: Impact on the crop yield and water use efficiency. In Journal of Engineering Thermophysics, vol. 25, no. 1, pp. 117–125.10.1134/S1810232816010112
  3. ASAE S436.1. 1998. Test procedure for determining the uniformity of water distribution of center pivot and lateral move irrigation machines equipped with spray or sprinkler nozzles.
  4. BERBEL, J. – MATEOS, L. 2014. Does investment in irrigation technology necessarily generate rebound effects? A simulation analysis based on an agro-economic model. In Agricultural Systems, vol. 128, pp. 25–34.10.1016/j.agsy.2014.04.002
  5. CASTELLANOS, M. T. – CARTAGENA, M. C. – REQUEJO, M. I. – ARCE, A. – CABELLO, M. J. – RIBAS, F. – TARQUIS, A. M. 2016. Agronomic concepts in water footprint assessment: A case of study in a fertirrigated melon crop under semiarid conditions. In Agricultural Water Management, vol. 170, no. C, pp. 81–90.10.1016/j.agwat.2016.01.014
  6. DECHMI, F. – PLAYÁN, E. – FACI, J. M. – TEJERO, M. 2003a. Analysis of an irrigation district in northeastern Spain I. Characterisation and water use assessment. In Agricultural Water Management, vol. 61, no. 2, pp. 75–92.10.1016/S0378-3774(03)00020-9
  7. DECHMI, F. – PLAYÁN, E. – FACI, J. M. – TEJERO, M. – BERCERO, A. 2003b. Analysis of an irrigation district in northeastern Spain II. Irrigation evaluation, simulation and scheduling. In Agricultural Water Management, vol. 61, no. 2, pp. 93–109.10.1016/S0378-3774(03)00021-0
  8. DE MENEZES, P. L. – AZEVEDO, C. A. V. – EYNG, E. – NETO, J. D. – LIMA, V. L. A. 2015. Artificial neural network model for simulation of water distribution in sprinkle irrigation. In Revista Brasileira de Engenharia Agricola e Ambiental, vol. 19, no. 9, pp. 817–822.10.1590/1807-1929/agriambi.v19n9p817-822
  9. GONZÁLEZ PEREA, R. – CAMACHO POYATO, E. – MONTESINOS, P. – RODRÍGUEZ DÍAZ, J. A. 2014. Critical points: Interactions between on-farm irrigation systems and water distribution network. In Irrigation Science, vol. 32, no. 4, pp. 255–265.10.1007/s00271-014-0428-2
  10. HENNYEYOVÁ, K. – PALKOVÁ, Z. 2006. Use of Information Technologies and Simulation Models in Irrigation Economy. Nitra : SPU Nitra, 108 pp. ISBN 8080697159 (In Slovak: Využitie informačných technológií a simulačných modelov v závlahovom hospodárstve)
  11. HOFMEISTER, B. 1961. Nature and manifestation of transhumance. In Erdkunde, vol. 2, pp. 121–135. (In German: Wesen und Erscheinungsform der Transhumance).10.3112/erdkunde.1961.02.04
  12. JOBBÁGY, J. 2011. Evaluation of Irrigation Machinery Regarding to Uniformity of Irrigation. Nitra : SPU Nitra, 123 pp. (In Slovak: Hodnotenie závlahovej techniky z hľadiska rovnomernosti závlahy postrekom)
  13. JOBBÁGY, J. – HOLBAY, A. – TOMÁŠIK, L. 2013. Design and testing of device for measuring the longitudinal uniformity of reel hose irrigation machine. In Journal of Central European Agriculture, vol. 14, no. 4, pp. 1334–1342.10.5513/JCEA01/14.4.1350
  14. JOBBÁGY, J. – KRIŠTOF, K. 2018. Evaluation of the coefficient of uniformity and non-uniformity of irrigation for wide-range irrigators in various field conditions. In Research in Agricultural Engineering, vol. 64, no. 2, pp. 55–62.10.17221/8/2017-RAE
  15. JOBBÁGY, J. – SIMONÍK, J. – FINDURA, P. – ÁRVAY, J. 2008. Determination of soil moisture by two methods to create maps of soil moisture. In Acta Technologica Agriculturae, vol. 11, no. 4, pp. 93–97.
  16. LÁTEČKA, M. 2000. Uniformity of Irrigation in Irrigation Systems Using Rotary Irrigation Machinery. Nitra : SPU Nitra, 58 pp. (In Slovak: Rovnomernosť postreku pri závlahe otáčavými postrekovačmi).
  17. LI, Y. – BAI, B. – YAN, H. 2015. Development and validation of a modified model to simulate the sprinkler water distribution. In Computers and Electronics in Agriculture, vol. 111, pp. 38–47.10.1016/j.compag.2014.12.003
  18. LI, J. – RAO, M. 2000. Sprinkler water distributions as affected by winter wheat canopy. In Irrigation Science, vol. 20, no. 1, pp. 29–35.10.1007/PL00006715
  19. LIPTÁK, F. 1971. Evaluation of the spray distribution uniformity for irrigation machine. In Hidrológiai Közlöny, no. 8–9, pp. 385–393. (In Hungarian: Az esöszerü öntözés permeteloszlásanak értékelése).
  20. LOVARELLI, D. – BACENETTI, J. – FIALA, M. 2016. Water footprint of crop productions: A review. In Science of the Total Environment, vol. 548–549, pp. 236–251.10.1016/j.scitotenv.2016.01.022
  21. MAROUFPOOR, E. – FARYABI, A. – GHAMARNIA, H. – MOSHREFI, G. Y. 2010. Evaluation of uniformity coefficients for sprinkler irrigation systems under different field conditions in Kurdistan Province (northwest of Iran). In Soil and Water Research, vol. 5, no. 4, pp. 139–145.10.17221/42/2009-SWR
  22. OEHLER, T. 1932. The water distribution in natural and artificial rain. In BKTL-Schriften “Die Feldberegnung“, Heft 30. (In German: Die Wasserverteilung bei natürlichen und künstlicher Regen)
  23. OEHLER, T. 1933. The uniformity of the water distribution through rotary jet sprinkler. The field irrigation. In BKTL-Schriften, Heft 38. (In German: Die Gleichmässigkeit der Wasserverteilung durch Drehstrahlregner. Die Feld. Beregnung)
  24. SOLOMON, K. 1979. Variability of sprinkler coefficient of uniformity test results. In Transactions of the ASAE, vol. 22, no. 5, pp. 1078–1086. STATISTICAL ANALYSIS SYSTEM (SAS). 2003. SAS User’s Guide: Statistics. Version 8.02, SAS Institute, Inc., Cary.10.13031/2013.35159
  25. STAEBNER, F. E. 1931. Test of Spray Irrigation Equipment. Washington: United States Department of Agriculture, pp. 1–29.
  26. Temizel, K. E. 2016. Mapping of some soil properties due to precision irrigation in agriculture. In Agronomy Research, vol. 14, no. 3, pp. 959–966.
  27. TOMÁŠIK, L. – JOBBÁGY, J. 2013. Optimization of irrigation spray distribution in the term of its uniformity. In AGRIS on-line Papers in Economics and Informatics, vol. 5, no. 2, pp. 103–109.
  28. TOPAK, R. – SUHERI, S. – CIFTCI, N. – ACAR, B. 2005. Performance evaluation of sprinkler irrigation in a semi-arid area. In Pakistan Journal of Biological Sciences, vol. 8, pp. 97–103.10.3923/pjbs.2005.97.103
  29. UDDIN, J. – HANCOCK, N. H. – SMITH, R. J. – FOLEY, J. P. 2013. Measurement of evapotranspiration during sprinkler irrigation using a precision energy budget (Bowen ratio, eddy covariance) methodology. In Agricultural Water Management, vol. 116, pp. 89–100.10.1016/j.agwat.2012.10.008
  30. VOIGHT, D. 1962. The assessment of water distribution in rotary irrigator. In Deutsche Agrartechnik, vol. 12, pp. 264–266. (In German: Die Beurteilung der Wasserverteilung bei Drehstrahlregnern).
  31. WILCOX, J. C. – SWAILES, G. E. 1947. Uniformity of water distribution by some under tree orchard sprinkler. In Journal of Scientific Agriculture, vol. 27, pp. 565–583.
  32. ZDRAŽIL, K. – SPITZ, P. 1966. Determination of optimum rainfall curves in rotary sprayers. In Vodné Hospodárstvo, no. 5, pp. 203–204. (In Czech: Stanovení optimálních dešťomerných křivek u otočných postřikovačů).
Language: English
Page range: 109 - 114
Published on: Nov 12, 2019
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2019 Ján Jobbágy, Norbert Michlian, Peter Dačanin, Ivan Rigó, published by Slovak University of Agriculture in Nitra
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.