Regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systems

The reliability of drip irrigation systems depends on the quality of water purification of the water sources used. The degree of its purification is a particularly important factor affecting the performance of all components of irrigation systems, including droppers. The purpose of the study was to...

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Main Authors: A.A. Kalashnikov, N.A. Abduramanov, P.A. Kalashnikov, A.E. Baizakova, N.V. Denisyuk
Format: Article
Language:English
Published: University of Guilan 2023-10-01
Series:Caspian Journal of Environmental Sciences
Subjects:
Online Access:https://cjes.guilan.ac.ir/article_7129_009ede78cf7c0e755213b9791b4f9dc0.pdf
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author A.A. Kalashnikov
N.A. Abduramanov
P.A. Kalashnikov
A.E. Baizakova
N.V. Denisyuk
author_facet A.A. Kalashnikov
N.A. Abduramanov
P.A. Kalashnikov
A.E. Baizakova
N.V. Denisyuk
author_sort A.A. Kalashnikov
collection DOAJ
description The reliability of drip irrigation systems depends on the quality of water purification of the water sources used. The degree of its purification is a particularly important factor affecting the performance of all components of irrigation systems, including droppers. The purpose of the study was to assess the applicability of a hydrocyclone with adjustable parameters to improve the quality of water purification in drip irrigation systems. The research was carried out using the method of comparative tests of various configurations of sections of the inlet pipe of the hydrocyclone, considering changes in their angle of inclination along the vertical plane and changes in the depth of immersion of the drain pipe. By changing the configuration of the inlet pipe of the hydrocyclone, the angle of deviation along the vertical (θº) and horizontal (φº) planes, as well as the depth of immersion of the drain pipe (ac), the effect on the distribution of the flow rates between the discharge holes required for the quality of cleaning has been established. It has been found that the greatest clarification of water is provided with the semicircular shape of the inlet pipe, with the inclination of the inlet pipe along the vertical plane θº = 20 ... 40, with the immersion of the drain pipe to the interface plane of the cylindrical and conical parts of the hydrocyclone.
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issn 1735-3033
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language English
publishDate 2023-10-01
publisher University of Guilan
record_format Article
series Caspian Journal of Environmental Sciences
spelling doaj-art-ca59cf96452f4eee83c3fa7f03faa0b72025-08-20T02:52:31ZengUniversity of GuilanCaspian Journal of Environmental Sciences1735-30331735-38662023-10-0121478779910.22124/cjes.2023.71297129Regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systemsA.A. Kalashnikov0N.A. Abduramanov1P.A. Kalashnikov2A.E. Baizakova3N.V. Denisyuk4Kazakh Scientific Research Institute of Water Economy, LLP, Taraz, KazakhstanKazakh Scientific Research Institute of Water Economy, LLP, Taraz, KazakhstanKazakh Scientific Research Institute of Water Economy, LLP, Taraz, KazakhstanKazakh Scientific Research Institute of Water Economy, LLP, Taraz, KazakhstanKazakh Scientific Research Institute of Water Economy, LLP, Taraz, KazakhstanThe reliability of drip irrigation systems depends on the quality of water purification of the water sources used. The degree of its purification is a particularly important factor affecting the performance of all components of irrigation systems, including droppers. The purpose of the study was to assess the applicability of a hydrocyclone with adjustable parameters to improve the quality of water purification in drip irrigation systems. The research was carried out using the method of comparative tests of various configurations of sections of the inlet pipe of the hydrocyclone, considering changes in their angle of inclination along the vertical plane and changes in the depth of immersion of the drain pipe. By changing the configuration of the inlet pipe of the hydrocyclone, the angle of deviation along the vertical (θº) and horizontal (φº) planes, as well as the depth of immersion of the drain pipe (ac), the effect on the distribution of the flow rates between the discharge holes required for the quality of cleaning has been established. It has been found that the greatest clarification of water is provided with the semicircular shape of the inlet pipe, with the inclination of the inlet pipe along the vertical plane θº = 20 ... 40, with the immersion of the drain pipe to the interface plane of the cylindrical and conical parts of the hydrocyclone.https://cjes.guilan.ac.ir/article_7129_009ede78cf7c0e755213b9791b4f9dc0.pdfdrip irrigation systemhydrocyclonecleaning quality
spellingShingle A.A. Kalashnikov
N.A. Abduramanov
P.A. Kalashnikov
A.E. Baizakova
N.V. Denisyuk
Regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systems
Caspian Journal of Environmental Sciences
drip irrigation system
hydrocyclone
cleaning quality
title Regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systems
title_full Regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systems
title_fullStr Regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systems
title_full_unstemmed Regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systems
title_short Regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systems
title_sort regulation of hydrocyclone parameters to improve the quality of water purification on drip irrigation systems
topic drip irrigation system
hydrocyclone
cleaning quality
url https://cjes.guilan.ac.ir/article_7129_009ede78cf7c0e755213b9791b4f9dc0.pdf
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AT pakalashnikov regulationofhydrocycloneparameterstoimprovethequalityofwaterpurificationondripirrigationsystems
AT aebaizakova regulationofhydrocycloneparameterstoimprovethequalityofwaterpurificationondripirrigationsystems
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