Hydraulic and Jet Breakup Characteristics of Modified Impact Sprinkler
Hydraulic Performance and Jet Breakup Characteristics of Impact Sprinkler with Dispersion Device
(Sprache: Englisch)
A new type of nozzle-dispersion devices was developed to improve the performance characteristics of impact sprinklers under low pressure. Experiments were conducted under standard and non-standard conditions of dispersion-nozzle devices and working...
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A new type of nozzle-dispersion devices was developed to improve the performance characteristics of impact sprinklers under low pressure. Experiments were conducted under standard and non-standard conditions of dispersion-nozzle devices and working pressures, and then compared with the commercial LP R33 sprinkler. The main objective were to (1) study the optimal combination of the dispersion and nozzle devices to improve the hydraulic performance of the impact sprinkler under low pressure conditions; (2) evaluate the effect of sprinkler rotation with the optimal combination of nozzle and water dispersion device on water distribution uniformity; (3) analyze the jet characteristics of the optimal sprinkler, and establish an empirical spray range formula based on the dispersion angle (th) and nozzle diameter (D2) for the optimal impact sprinkler; (4) To analyze the jet-breaking characteristics of the original and modified impact sprinklers, and find out why the hydraulic performanceof new sprinkler is better through the jet breakup analysis; (5) conduct a comparative analysis of the hydraulic performance of the optimal impact sprinkler and the commercial LP R33 from Nelson.
Autoren-Porträt von Zakaria Issaka, Hong Li
Issaka, ZakariaI am a senior lecturer of soil and water engineering at Tamale Technical University of Ghana. My research interests focus on water-saving irrigation equipment and technologies. My research explores innovative designs to improve the performance and save water in the artificially drained catchments.
Bibliographische Angaben
- Autoren: Zakaria Issaka , Hong Li
- 2020, 152 Seiten, Maße: 22 cm, Kartoniert (TB), Englisch
- Verlag: LAP Lambert Academic Publishing
- ISBN-10: 6202562927
- ISBN-13: 9786202562928
Sprache:
Englisch
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