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Hydraulic Calculations of a Slotted Separator Using the SSIIM Program

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Analysis of the results of the hydraulic calculations of a slotted separator allowed for changes in the separator design, considering the reduction of flow turbulence, ensuring the continuity of water flow and sediments, and the optimal location of the slots. The separator is a crucial element of the installation for the hydromechanical removal of sediments from the bottom of a water reservoir. Tests were carried out on the physical and mathematical models. Hydraulic calculations and numerical simulations were carried out using the SSIIM (Simulation of sediment movements in water intakes with multiblock option) program. The program enables three-dimensional analysis of flows and transport of sediments in rivers and canals by solving the Navier-Stokes equation and the turbulent model k-Ɛ. In addition, several numerical experiments of the separator work were carried out for various design solutions regarding the geometry of the inlet and outlet channels and their connection with the chambers and slots system. Finally, the numerical simulations and conducted research on a physical model allowed us to develop an optimal solution.
Słowa kluczowe
Rocznik
Tom
Strony
172--189
Opis fizyczny
Bibliogr. 20 poz., rys.
Twórcy
  • Poznan University of Life Sciences, Poland
  • Poznan University of Life Sciences, Poland
autor
  • Poznan University of Life Sciences, Poland
  • Poznan University of Life Sciences, Poland
Bibliografia
  • Abouzeid, G., Mohamed H.I., Ali S.M. (2007). 3-D numerical simulation of flow and clear water scour by interaction between bridge piers. J. of Eng. Sciences, Assiut University, Egypt, 35(4), 891-907.
  • Agrawal, A.K. (2005). Numerical Modelling of Sediment Flow in Tala Desilting Chamber. M. Sc. Thesis, Department of Hydraulic and Environmental Engineering, Norwegian University of Science and Technology, Trondheim, Norway.
  • Błoński, S. (2009). Analiza przepływu turbulentnego w mikrokanale. Rozprawa doktorska, Zakład Mechaniki i Fizyki Płynów, Instytut Podstawowych Problemów Techniki Polskiej Akademii Nauk, Warszawa, Poland.
  • Brandt, S.A. (1999). Reservoir Desiltation by Means of Hydraulic Flushing: Sedimentological and Geomorphological Effects in Reservoirs and Downstream Reaches As Illustrated by the Cachí Reservoir and the Reventazón River, Costa Rica. Ph.D. thesis submitted to the Institute of Geography, Faculty of Science, University of Copenhagen. Geographica Hafniensia, A8.
  • Hämmerling, M., Błażejewski, R., Walczak, N. (2013). Modeling of local scour in non-cohesive soils below sills using SSIIM computer code. Rocznik Ochrona Środowiska, 15, 901-913.
  • Hilldebrant, G., Klassen, I., Olsen, R.N.B (2017). 3D CFD modelling of velocities and sediment transport in the Iffezhiem hydropower reservoir. Hydrology Research, 48(1). 147-159. DOI: 10.2166/nh.2016.197
  • Launder, B.E., Spalding, D.B. (1974). The numerical computation of turbulent flows. Computer Methods in Applied Mechanics and Engineering, 3(2): 269-289.
  • Madeyski, M., Michalec, B., Tarnawski, M. (2008): Zamulanie małych zbiorników wodnych i jakość osadów dennych. Infrastruktura i Ekologia Terenów Wiejskich. 11, Komisja Technicznej Infrastruktury Wsi PAN w Krakowie.
  • Nieć, J., Zawadzki, P., Nowacki, F. (2019). Small Dam Drainage with Nonwoven Geotextile after 40 Years of Exploitation. Appl. Sci., 9(19), 4161, DOI: 10.3390/ app9194161
  • Olsen, N.R.B. (2007). Numerical Modelling and Hydraulics. The Norvegian Univerity of Science and Technology. Available on: https://www.ntnu.edu/ivm/cfd, September 2015.
  • Olsen, N.R.B. (2009). A three dimensional numerical model for simulation of sediments movements in water intakes with multiblock options. The Norwegian University of Science and Technology, Available on: https://www.ntnu.edu/ivm/cfd, September 2015.
  • Olsen, N.R.B. (2014). A three-dimensional numerical model for simulation of sediment movements in water intakes with multiblock option. User’s manual. The Norvegian Univerity of Science and Technology. Available on: https://www.ntnu.edu/ivm/ cfd, September 2015.
  • Parzonka, W., Kasperek, R., Głowski, R. (2010). Ocena degradacji koryta właściwego Odry środkowej i program działań naprawczych. Infrastruktura i ekologia terenów wiejskich, 8(1). PAN, Kraków, Poland. 59-68.
  • Rodi, W. (1980). Turbulence Models and their Application in Hydraulics, A State of the Art Review. IAHR, Delft, Holandia.
  • Rüther, N. (2006). Computational fluid dynamics in fluvial sedimentation engineering. Ph. D. Thesis, Department of Hydraulic and Environmental Engineering, Norwegian University of Science and Technology, Trondheim, Norway.
  • Singh, T.P., Chandrashekhar, J., Agrawal, A.K. (2007). Analysis of water and sediment flow in desilting basin of a run-of-river hydroelectric project. International Conference on Small Hydropower – Hydro Sri Lanka.
  • Zawadzki, P., Błażejewski, R. (2018). Urządzenie do hydromechanicznego oczyszczania i usuwania osadów dennych ze zbiorników zaporowych. Patent 228599. Wiadomości Urzędu Patentowego, 4, Urząd Patentowy Rzeczypospolitej Polskiej, Warszawa, 208.
  • Zawadzki, P., Kujawiak, S., Walczak, N., Oliskiewicz-Krzywicka, A. (2018): Investigation of a Slotted Separator for Hydromechanical Installation of Sludge Removal from a Water Reservoir. Rocznik Ochrona Środowiska, 20, 464-480.
  • Zhang, Q., Hillebrand, G., Klassen, I., Vollmer, S., Olsen, N.R.B., Moser, H., Hinkelmann, R. (2013). Sensitivity analysis of flow field simulation in the Iffezheim Reservoir in Germany with the 3D SSIIM model. Proceedings of 2013 IAHR World Congress.
  • Zhang, Q., Speckter, T., Hinkelmann, R., Hillebrand, G., Hoffmann, T., Moser, H. (2016). Sensitivity of deposition and erosion to bed composition in the Iffezheim reservoir, Germany. In: River Sedimentation, Taylor & Francis Group. DOI: 10.1201/97813 15623207-146
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-e2a16968-e0d0-4f61-b34b-84d9610738e1
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