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In this study, it was aimed at determining the seasonal variability in the sediment concentrations observed in an agricultural drainage basin. This research was carried out in an agricultural basin of 9 495 ha, located in the Cukurova region within the borders of Adana province, in Turkey. In order to determine the sediment concentrations, an automatic water sampler was set at the outlet (L4) of the main drainage channel (YD2) that provides drainage of the basin. Drainage water samples with 250 ml volume were taken on a daily time step. Sediment concentration values of the water samples taken were determined in the laboratory by the drying and evaporation method. The sediment concentration series observed in the 2020 hydrological year were directly associated with the sediment data observed simultaneously at the drainage flow observation station located in the Sirkenli village, downstream of the YD2. Daily sediment concentration series in L4 was disaggregated by months and seasons of the hydrologic year 2020 to make a temporal comparison among the data. Temporal analysis showed that the sediment concentration values have been prone to an increase in heavily rainy periods as well as in irrigation season. Additionally, it was determined that the correlation between sediment concentration values and drainage water depths in the main drainage channel was statistically insignificant during the peak irrigation season. The insignificant corre lation between sediment concentration and drainage water depth might be ascribed to the direct by-pass irrigation flows to the drainage system of the agricultural basin.
Czasopismo
Rocznik
Tom
Strony
84--95
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
- University of Cukurova, Faculty of Agriculture Department of Agricultural Structures and Irrigation 01330 Balcali, Adana, Turkey
autor
- University of Cukurova, Faculty of Agriculture Department of Agricultural Structures and Irrigation 01330 Balcali, Adana, Turkey
autor
- University of Cukurova, Faculty of Agriculture Department of Agricultural Structures and Irrigation 01330 Balcali, Adana, Turkey
autor
- University of Cukurova, Faculty of Agriculture Department of Agricultural Structures and Irrigation 01330 Balcali, Adana, Turkey
Bibliografia
- 1. Akuzum, T., Cakmak, B., Gokalp, Z. (2010). Evaluation of water resources management in Turkey. Journal of Agricultural Sciences, in Turkish with English abstract, 3 (1): 67-74.
- 2. Bilgin, A. (2015). An assessment of water quality in the Coruh Basin (Turkey) using multivariate statistical techniques. Environ Monit Assess, DOI:10.1007/s10661-015-4904-9, 187:721.
- 3. Demir, S., Oguz, I., Ciba,O. F., Ozer, E. (2017). Estimation of soil and runoff losses under different land use using the wepp hillslope model. Gaziosmanpasa University Journal of Faculty of Agriculture, in Turkish with English abstract, in Turkish with English abstract, 34 (Suplemental Issue) 99-106.
- 4. Guvel, S. P. (2007). Investigation of solid matter accumulation in Seyhan dam reservoir with decision support system. C.U. PhD Thesis, Adana, in Turkish with English abstract, 225p.
- 5. Helsel, D.R., Hirsch, R.M., Ryberg, K.R., Archfield, S.A., Gilroy, E.J. (2020). Statistical methods in water resources. U.S. Geological Survey Techniques and Methods, 4(A3): 458.
- 6. Hogg, R.V., Craıg, A.T. (1995). Introduction to mathematical statistics, prentice hall, Upper Saddle River, New Jersey 07458, paper: 92.
- 7. Ibrikci,H., Cetin, M., Sagır, H., Ucan, M., Golpinar, M.S., Karnez,E. (2016). Monitoring the Nitrate Concentrations in Drainage in Irrigated Akarsu Irrigation District. Journal of Çukurova Agriculture Food Sciences, in Turkish with English abstract, 31(3): 153-163.
- 8. Irvem, A., Tulucu, K. (2004). Creating of Soil Loss and Sediment Yield Estimation Model (EST) with Geographical Information System and Application to Seyhan Korkun Sub-Basin. Çukurova University Journal of Natural and Applied Sciences, in Turkish with English abstract, No:13.
- 9. Karakaplan, S. (2010). Relationship of sediment transport with precipitation, runoff, education and sediment. Atatürk University Journal of Faculty of Agriculture, in Turkish with English abstract, 10 (3-4).
- 10. Koklu, N., Buyukozturk, S. and Bokeoglu, C. O. (2006). Statistics for the Social Sciences. Ankara: Pegem Publications, in Turkish with English abstract.
- 11. Lutz, J. F., Hargrove, B. D. (1944). Soil movement as affected by slope, discharge, depth and velocity of water. Agr. Exp. Sta. North Carolina State Collage, Technical Bulletin No. 78. Onstad C. H., Foster G. R. 1969: Erosion modelling on a watershed. Trans. ASAE., 18: 288-292.
- 12. Opan, M., Dogan, E., Sonmez, O., Temiz, T., Demir, F. (2017). The effect of land use change on the amount of solids carried in the river: Taşlıçay Stream, Turkey. International Symposium on Innovative Technologies in Engineering and Science, in Turkish with English abstract, 29-30 September 2017.
- 13. Podmore, T. H., Merva, G. E. (1971). Silt transport by thin film flow. Trans. ASAE., 14 (16): 1065-1067, 1072.
- 14. Terzi, O., Baykal, T. (2015). Dalgacık - Estimation of suspended solids in rivers with GEP model. Suleyman Demirel University Journal of Natural and Applied Sciences, in Turkish with English abstract, 19(2): 38-45.
- 15. Ulke, A., Ozkul, S., Tayfur, G. (2011). Estimation of suspended solids load for Gediz river by empirical methods. IMO Technical Journal, in Turkish with English abstract, 5387-5407, page 348.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-84ce8631-69bd-4365-b91f-547c6030c7c4