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The paper attempts to assess the possibility of using typical check structures equipped with sluice gates to measure the volumetric flow rate in the irrigation channels. The submerged flow through the sluice gate was considered. Experimental tests on a model of typical check structure in 1:2 scale were carried out. The conducted analyzes confirmed the possibility of using discharge equation for submerged flow through the sluice gate to estimate the water flow rate in the irrigation channels. In order to obtain accurate values of flow rate, the downstream tailwater depth should be measured at the appriopriate distance from the sluice gate. For different values of gate-opening height, the downstream water depth measurement locations allowing for a correct flow estimation were indicated. This approach might be useful in calibration of other designs of sluice gates for flow measurements.
Wydawca
Czasopismo
Rocznik
Tom
Strony
61--69
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
autor
- Warsaw University of Life Sciences-SGGW, Faculty of Civil and Environmental Engineering, Nowoursynowska Str. 159, 02-787 Warsaw, Poland
autor
- Warsaw University of Life Sciences-SGGW, Faculty of Civil and Environmental Engineering, Nowoursynowska Str. 159, 02-787 Warsaw, Poland
Bibliografia
- BOITEN W. 1992. Vertical gates for distribution of irrigation water. In: International conference on protection and development of the Nile and other major rivers. 3–5.02.1992 Cairo, Egypt. Rapport 30. Delft, the Netherlands. Landbouwuniversiteit Wageningen Vakgroep Waterhuishouding pp.15.
- CBSiPWM 1969. Zbiór projektów typowych budowli wodnomelioracyjnych. Projekty typowe zastawek typ Z. Ministerstwo Rolnictwa. [A collection of projects of typical water-drainage structures. Typical designs of type-Z check structure. Polish Ministry of Agriculture]. Warszawa. Centralne Biuro Studiów i Projektów Wodnych Melioracji p. 25.
- HENDERSON F.M. 1966. Open channel flow. London, UK. Mac-Millan Co. pp. 522.
- HENRY H.R. 1950. Discussion on “Diffusion of Submerged Jets”. In: Transaction American Society of Civil Engineers. Ed. M.L. Albertson, Y.B. Dai, R.A. Jensen, H. Rouse. Vol. 115. Paper No. 2409 p. 687–694.
- JĘDRYKA E., KACA E. 1998. Ocena błędu oszacowania wartości współczynników wydatku melioracyjnych zastawek zasuwowych [Assessment of the error in estimating an output coefficient value for a melioration gate weirs]. Wiadomości Instytutu Melioracji i Użytków Zielonych. T. 19. Z. 3 p. 129–142.
- KACA E. 1996. Wzorcowanie budowli wodnomelioracyjnych [Calibration of water-drainage structures]. Biblioteczka Wiadomości IMUZ. Nr 87. Falenty. Wydaw. IMUZ. ISBN 83-85735-26-7 pp. 48.
- KRAATZ D.B. 1975. Small hydraulic structures [online]. FAO Irrigation and Drainage Paper. Paper. No. 26/2. Rome. Food and Agriculture Organization of the United Nations. ISBN 92-5-100161-8 pp. 292. [Access 30.01.2020]. Available at: http://www.fao.org/3/a-bl046e.pdf
- KUBRAK E., KUBRAK J. 2018. Podstawy obliczeń z mechaniki płynów w inżynierii i ochronie środowiska [Basics of fluid mechanics in environmental engineering and environmental protection]. 2nd ed. Warszawa. Wydaw. SGGW. ISBN 978-83-7583-779-7 pp. 513.
- LOZANO D., MATEOS L., MERKLEY G.P., CLEMMENS A.J. 2009. Field calibration of submerged sluice gates in irrigation canals. Journal of Irrigation and Drainage Engineering Vol. 135. Iss. 6. DOI 10.1061/(ASCE)IR.1943-4774.0000085.
- RAJARATNAM N., SUBRAMANAYA K. 1967. Flow equations for the sluice gate. Journal of Irrigation and Drainage Engineering. Vol. 93(3) p. 167–186.
- ROUSE H. 1946. Elementary mechanics of fluids. New York. Dover Publication pp. 376.
- SWAMEE P.K. 1992. Sluice gate discharge equations. Journal of Irrigation and Drainage Engineering. Vol. 118(1) p. 56–60.
- USBR 2001. Water measurement manual. A water resources technical publication. A guide to effective water measurement practices for better water management [online]. Washington, DC. United States Department of the Interior Bureau of Reclamation. [Access 30.01.2020]. Available https://www. usbr.gov/tsc/techreferences/mands/wmm/index.htm
- Zhukovskiy N.Ye. 1936. Polnoye sobraniye sochineniy. T. 3. Gidrodinamika. TSAGI im. N.Ye. Zhukovskogo. Moskva–Leningrad. ONTI NKTP SSSR pp. 486.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ff7fbc34-7c46-4473-a7b9-9be51e9a0f3b