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Calculation of Bed Load Discharge for Coarse Sand

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
At present, during the period of intensive climatic changes, it is important to thoroughly take into account the hydrological regimes of water bodies. Оnе of the major conditions of ensuring hydrological safety of territories is а reliable forecast of stream-channel deformations and channel-related processes in the case of water bodies and their separate sections. This paper reviews different methods of calculating bed load discharge. Thus, a new technique оf calculation оf bed load discharge was developed with consideration of the probabilistic estimate оf the beginning оf bed load motion. The method shows satisfactory results compared to previous techniques in use.
Słowa kluczowe
Rocznik
Strony
13--17
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
  • Water Resources Laboratory, Institute of Geography and Water Security, Pushkin Str. 99, Almaty, Kazakhstan
  • Department of Meteorology and Hydrology, Al-Farabi Kazakh National University, Al-Farabi Avenue 71, Almaty, Kazakhstan
  • Water Resources Laboratory, Institute of Geography and Water Security, Pushkin Str. 99, Almaty, Kazakhstan
  • Water Resources Laboratory, Institute of Geography and Water Security, Pushkin Str. 99, Almaty, Kazakhstan
Bibliografia
  • 1. Duskaev, K.K. 1997. Стохастический метод расчета расхода влекомых наносов на горных реках. Вестник КазГУ. Серия географическая, (4), 77–79. (in Russian)
  • 2. Duskaev, K.K. 1995, Principles of stone stabiity and the Probability of Armour Layer Break in Riprap Structures. River, Coastal and Shoreline Protestion. John Willey and Sons, Chichester, England, 677–682.
  • 3. Mikhalev, M.A., Duskaev, K.K. 1992, Determination of the stability of stones on a slope with a given probability of detachment. Hydrotechnical Construction, 174–178.
  • 4. Mikhalev, M.A., Duskaev, K.K. 1988, Determination of the stability of stones on a slope with a given probability of detachment. Hydrotechnical Construction, 22(3), 174–178
  • 5. Mikhalev, M.A. 1975, Materials on modeling some types of motion of a viscous fluid. Izvestia Vedeneeva VNIIG, Leningrad, 108, 27–39. (in Russian)
  • 6. Mikhalev, M.A. 2013, Calculating the main canals. Magazine of Civil Engineering, 39(4), 83–93
  • 7. Matskina, M.M., Petrochenko, M.V., Radaev, A.E. 2021, Stochastic model of the construction process implemented with application of sliding formwork. Magazine of Civil Engineering, 101(1), 10111.
  • 8. Veksler, A.B., Petrov, O.A. 2020, Calculated Relationship Between Flow Rates and Water Levels in the Downstream Pools of Hydroelectric Power Plants as a Result of River-Bed Transformation. Power Technology and Engineering, 53(6), 695–702.
  • 9. Tursunova, A., Kunshygar, D.Z. 2016 Self-purification ability of ponds of Kazakhstan. News of the National Academy of Sciences of the Republic of Kazakhstan, Series of Geology and Technical Sciences, 2(416), 87–92.
  • 10. Alimkulov, S.K., Saparova, A.A., Tursunova, A.A., Baspakova, G.R. 2021 Measuring spatial-temporal regularities of river flow based on IoT technology. International Journal of Agricultural Resources, Governance and Ecology, 17(2–4), 247–261.
  • 11. Duskayev, K.K. 1988. Calculation of bank protection from rockfill, taking into account the probability of stone failure. Proceedings of the 5th All-Union Hydrological Congress, V.10, Book 2. Gidrometeoizdat, Leningrad, 260–266. (in Russian)
  • 12. Kromer, R.K. 1985. The regime of solid runoff of the rivers of the South of Kazakhstan. Water Resources, 6, 105–110. (in Russian)
  • 13. Duskayev, K., Myrzakhmetov, A., Zhanabayeva, Z., Klein, I. 2020. Features of the sediment runoff regime downstream the Ile river. Journal of Ecological Engineering, 21(2), 117–125.
  • 14. Karaushev A. 1977. Theory and methods applied in estimation of river drifts. Gidrometeoizdat, Leningrad, 272. (in Russian)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-efd34fd0-443b-426e-b50e-dbc0a344b027
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