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Tytuł artykułu

Modern Methods of Irrigation Water Purification by a Mesh-Filter Using Influence of Low Frequency Vibration

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Języki publikacji
EN
Abstrakty
EN
The article is devoted to the analysis of different methods of irrigation water purification from suspended particles. There have been considered the problems of irrigation water purification by using the low-frequency vibration technology and the effects arising from the influence of vibration on the water with different floating impurities. Vibration parameters that allow obtaining the effect of standing wave was substantiated. Also in the article have been disclosed the influence of low-frequency vibration on the quality of water purification depending on the types of pollution and their granulometric composition. Obtained the hydraulic characteristics of the mesh such as the effect of vibration on the pressure loss.
Twórcy
autor
  • National University of Water and Environmental Engineering, Rivne, Ukraine
autor
  • National University of Water and Environmental Engineering, Rivne, Ukraine
autor
  • Lviv Polytechnic National University, Lviv, Ukraine
autor
  • Lviv Polytechnic National University, Lviv, Ukraine
Bibliografia
  • 1. Gurvich S. M 1961. Vodopodgotovka. V.. Gosenergoizdat,. 240 p.
  • 2. DSTU 7286: 2012. 2013 The quality of natural water for irrigation. Environmental criteria. - K .: Ministry of Economic Development of Ukraine, 14p. (in Ukrainian).
  • 3. Koganovsky A. M. et al 1974. Purification of industrial wastewater. Kiev: Technique, 257 p. (in Russian).
  • 4. Babaev I. S 1978. Non-reagent methods of cleaning high-muddy waters. - M.: Stroiizdat, 80 p. (in Russian).
  • 5. Zhuzhikov, V. А. 1980. Filtration: Theory and Practice of Suspension Separation. 4th ed., Moscow, Chemistry, 400 p. (in Russian).
  • 6. Nuraev M. G. 1976. The constructive scheme of the self-washing vibrational pressure mesh filter. Construction and Architecture. 6: 116-118. (in Russian).
  • 7. Saveliev I. V. 1978. Course of General Physics, Vol. 2, Electricity and magnetism, waves, optics. Moscow, “Science”. 284 p.
  • 8. Solner K., Bondy C. 1938. The mechanism of Coagulation by ultrasonic Waves. Trans. Furud. Soc. 344 p.
  • 9. Bilokon S. O. 2012. Operation of irrigation system. Innovative technologies in water management complex. Collected articles of young scientists. Rivne 86-88 p.
  • 10. Megan Stubbs, October 17, 2016. Irrigation in U.S. Agriculture: On Farm Technologies and Best Management Practices. Congressional Research Service 7-5700 www.crs.gov R44158, 34 p.
  • 11. Marioara Rusu, Violeta Maria Simionescu, 2016. Irrigation sector in European Union: evolution, current state and characteristics. Scientific Papers Series Management, Economic Engineering in Agriculture and Rural Development Vol. 16, Issue 1: 471–476.
  • 12. Geoff Connellan 2002. Efficient Irrigation: A Reference Manual for Turf and Landscape. G Connellan, School of Resource Management and Geography, University of Melbourne, 32 p.
  • 13. Sretensky L.N. 1977. Theory of wave motion of a liquid. M. Nauka. 815 p. (in Russian) .
  • 14. Grin Yu. I., Shtangey A. I., Revva O. A. 2008 Environmental safety of irrigation by sprinklers. Melioration and water management. Vol. 96, p. 170-180 (in Ukrainian) .
  • 15. Bilokon S. O. 2017. Modern methods of purification of irrigation water by a mesh filter with low frequency vibration. Bulletin of the National University of Water Management and Nature Consumption. - Ch.6, Vo. 3 (79): 21-31. (in Ukrainian) .
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2019).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0b5335d0-9c18-403a-b266-2f195f6552fe
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