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Hydrodynamic Model of the New Waterway Through the Vistula Spit Cover

Hydrodynamic Model of the New Waterway Through the Vistula Spit

Open Access
|Sep 2020

References

  1. 1. Szymkiewicz, R. Hydrodynamics of Vistula Lagoon; Warsaw, 1992.
  2. 2. Cieśliński, R. Hydrochemical variability of the ecosystem of the Gulf of Elbląg (north-eastern Poland). Baltica 2016, 29, 121–132.10.5200/baltica.2016.29.11
  3. 3. Cieśliński, R.; Lewandowski, A. Hydrological regime of the Vistula Lagoon and the possible changes due to the construction of the waterway connecting the Vistula Bay with the Gulf of Gdansk. Inżynieria Morska i Geotechnika 2013, 69–78.
  4. 4. Chubarenko, I.P.; Chubarenko, B.V. General water dynamics of the Vistula Lagoon. Environmental and Chemical Physics 2002, 24, 213–217.
  5. 5. Szydłowski, M.; Kolerski, T.; Zima, P. Impact of the artificial strait in the Vistula Spit on the hydrodynamics of the Vistula Lagoon (Baltic Sea). Water 2019, 11, 990.10.3390/w11050990
  6. 6. Szymkiewicz, R. A mathematical model of storm surge in the Vistula Lagoon, Poland. Coastal Engineering 1992, 16, 181–203.10.1016/0378-3839(92)90036-T
  7. 7. Nadolny, A.; Samulak, M. Construction of a waterway connecting the Vistula Lagoon with the Bay of Gdańsk 2017.
  8. 8. García-Oliva, M.; Pérez-Ruzafa, Á.; Umgiesser, G.; McKiver, W.; Ghezzo, M.; De Pascalis, F.; Marcos, C. Assessing the hydrodynamic response of the Mar Menor Lagoon to dredging inlets tinterventions through numerical modelling. Water 2018, 10, 959.10.3390/w10070959
  9. 9. Dubrawski, R.; Zachowicz, J. Navigation channel in the Vistula Spit – Positives and negatives for the marine environment. Inżynieria Morska i Geotechnika 1997, 301–307.
  10. 10. Dembicki, E.; Jednorał, T.; Sedler, B.; Jaśkowski, J.; Zadroga, B. Navigation channel in Polish part of Vistula Sandbar. Inżynieria Morska i Geotechnika 2006, 275–286.
  11. 11. Szymkiewicz, R. Analysis of a concept of changing the hydrodynamic conditions of the Vistula Lagoon. Inżynieria Morska 1984, 258–260.
  12. 12. Toro, E.F. Riemann Solvers and Numerical Methods for Fluid Dynamics: A Practical Introduction; 3rd ed.; Springer-Verlag: Berlin Heidelberg, 2009; ISBN 978-3-540-25202-3.10.1007/b79761
  13. 13. Chow, V.T. Open-channel hydraulics; McGraw-Hill Book Company: New York, 1959;
  14. 14. Zima, P. Modeling of the two-dimensional flow caused by sea conditions and wind stresses on the example of Dead Vistula. Polish Maritime Research 2018, 25, 166–171.10.2478/pomr-2018-0038
  15. 15. Gąsiorowski, D. Analysis of floodplain inundation using 2D nonlinear diffusive wave equation solved with splitting technique. Acta Geophys. 2013, 61, 668–689.10.2478/s11600-012-0087-8
  16. 16. Szydłowski, M. Mathematical modelling of flash floods in natural and urban areas. In Proceedings of the Transboundary Floods: Reducing Risks Through Flood Management; Marsalek, J., Stancalie, G., Balint, G., Eds.; Springer Netherlands, 2006; pp. 143–153.10.1007/1-4020-4902-1_14
  17. 17. Kolerski, T.; Zima, P.; Szydłowski, M. Mathematical modeling of ice thrusting on the shore of the Vistula Lagoon (Baltic Sea) and the proposed artificial island. Water 2019, 11, 2297.10.3390/w11112297
  18. 18. Kwiatkowski, J.; Rasmussen, E.K.; Ezhova, E.; Chubarenko, B.V. The eutrophication model of the Vistula Lagoon. Oceanological Studies 1997, 26, 5–33.
  19. 19. Chubarenko, I.; Tchepikova, I. Modelling of man-made contribution to salinity increase into the Vistula Lagoon (Baltic Sea). Ecological Modelling 2001, 138, 87–100.10.1016/S0304-3800(00)00395-1
  20. 20. Ołdakowski, B.; Kwiatkowski, J. Forecast model of water quality of Vistula Lagoon. Inżynieria Morska i Geotechnika 1995.
  21. 21. Bielecka, M.; Kazmierski, J. A 3d mathematical model of Vistula Lagoon hydrodynamics – General assumptions and results of preliminary calculations; ECSA 8, Dublin, 2003; pp. 140–145.
  22. 22. Kruk, M.; Kempa, M.; Tjomsland, T.; Durand, D. The use of mathematical models to predict changes in the environment of the Vistula Lagoon. In Vistula Lagoon – Natural environment and modern methods of his research project on the example of Visla; Publishing PWSZ: Elbląg, 2011; pp. 165–180.
  23. 23. LeVeque, R.J. Finite Volume Methods for Hyperbolic Problems; Cambridge University Press, 2002; ISBN 978-0-521-00924-9.10.1017/CBO9780511791253
  24. 24. Burzyński, K.; Szydłowski, M. Numerical simulation of rapidly varied water flow in ‘Wild River’ type water slide. Archives of Hydro-Engineering and Environmental Mechanics 2003, 50, 3–23.
  25. 25. Szydłowski, M. Numerical simulation of open channel flow between bridge piers. TASK Quarterly 2011, 15, 271–282.
  26. 26. Szydłowski, M. Numerical modeling of hydrodynamics as a tool for design of the leisure and sport water structures. Acta Scientiarum Polonorum – Formatio Circumiectus 2016, 15, 353–367.10.15576/ASP.FC/2016.15.4.353
  27. 27. Szydłowski, M.; Mikos-Studnicka, P. Shallow water equations as a mathematical model of whitewater course hydrodynamics. In Recent Trends in Environmental Hydraulics; Geoplanet: Earth and Planetary Sciences; Springer Berlin Heidelberg: Berlin Heidelberg, 2020; p. accepted to publish.10.1007/978-3-030-37105-0_24
  28. 28. Szydłowski, M. Application of hydrodynamics model for a case study of the Kolbudy II Reservoir Embankment hypothetical failure. In Experimental Methods in Hydraulic Research; Rowinski, P., Ed.; Geoplanet: Earth and Planetary Sciences; Springer Berlin Heidelberg: Berlin, Heidelberg, 2011; pp. 299–306 ISBN 978-3-642-17475-9.10.1007/978-3-642-17475-9_22
  29. 29. Szydłowski, M.; Kolerski, T. Numerical modeling of water and ice dynamics for analysis of flow around the Kiezmark Bridge piers. In Free Surface Flows and Transport Processes; Geoplanet: Earth and Planetary Sciences; Springer Berlin Heidelberg: Berlin, Heidelberg, 2018; pp. 465–476.10.1007/978-3-319-70914-7_32
DOI: https://doi.org/10.2478/pomr-2020-0057 | Journal eISSN: 2083-7429 | Journal ISSN: 1233-2585
Language: English
Page range: 159 - 167
Published on: Sep 29, 2020
Published by: Gdansk University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2020 Michał Szydłowski, Tomasz Kolerski, published by Gdansk University of Technology
This work is licensed under the Creative Commons Attribution 4.0 License.