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Influence of Nearshore Mining Pits on Hydro- and Lithodynamics of a Dissipative Coastal Zone: Case Study of the Hel Peninsula (Poland)

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper deals with a sandy shore located on the open sea side of the Hel Peninsula in Poland (the south Baltic Sea coast). The study site displays a cross-shore profile that intensively dissipates wave energy, mostly due to breaking. The theoretical modelling of wave transformation at this site reveals specific distributions of wave heights and bed shear stresses. The sediment borrow areas, presently used and identified for future exploitation, are located inconveniently far from the periodically re-nourished shores. The paper presents the possibilities of dredging works in the coastal zone that would not disturb the natural nearshore motion of water and sediments. The results of the study can be helpful in formulating generic safety standards, at least with respect to dissipative shores of non-tidal or micro-tidal seas, like the Baltic Sea.
Rocznik
Strony
237--252
Opis fizyczny
Bibliogr. 22 poz., rys.
Twórcy
autor
  • Institute of Hydro-Engineering, Polish Academy of Sciences, Koscierska 7, 80-328 Gdansk, Poland
autor
  • Institute of Hydro-Engineering, Polish Academy of Sciences, Koscierska 7, 80-328 Gdansk, Poland
Bibliografia
  • Battjes J. A., Janssen J. P. F. M. (1978) Energy loss and set-up due to breaking of random waves, Proc. 16th ICCE, Vol. I, 569–587.
  • Cerkowniak G. R., Ostrowski R., Stella M. (2015) Wave-induced sediment motion beyond the surf zone: case study of Lubiatowo (Poland), Archives of Hydro-Engineering & Environmental Mechanics, 62 (1-2), 27–39.
  • Dean R. G. (2002) Beach Nourishment. Theory and Practice, Advanced Series on Ocean Engineering – Volume 18, World Scientific Publishing Co. Pte. Ltd., 399 pp.
  • Demir H., Otay E. N., Work P. A., Borekci O. S. (2004) Impacts of dredging on shoreline change. Journal of Waterway, Port, Coastal and Ocean Engineering, 130 (4), 170–178.
  • Douglass S. L. (2002) Saving America’s Beaches. The Causes of and Solutions to Beach Erosion, Advanced Series on Ocean Engineering – Volume 19, World Scientific Publishing Co. Pte. Ltd., 91 pp.
  • EUROSION (2004) Living with coastal erosion in Europe. Sediment and space for sustainability, Results from EUROSION study, Luxembourg: Office for Official Publications of the European Communities, http://www.eurosion.org/project/eurosion en.pdf.
  • Feser F., Weisse R., von Storch H. (2001) Multi-decadal atmospheric modelling for Europe yields multi-purpose data, Eos Trans AGU, 82 (28), 305–310.
  • Hitchcock D., Bell S. (2004) Physical Impacts of Marine Aggregate Dredging on Seabed Resources in Coastal Deposits, Journal of Coastal Research, 20 (1), 101–114.
  • Kaczmarek L. M., Ostrowski R., Pruszak Z., Rózyński G. (2005) Selected problems of sediment transport and morphodynamics of a multi-bar nearshore zone, Estuarine, Coastal and Shelf Science, Elsevier Science B.V., 62, 415–425.
  • Kalnay E., Kanamitsu M., Kistler R., Collins W., Deaven D., Gandin L., Iredell M., Saha S., White G., Woollen J., Zhu Y., Chelliah M., Ebisuzaki W., Higgins W., Janowiak J., Mo K. C., Ropelewski C., Wang J., Leetmaa A., Reynolds R., Jenne R., Joseph D. (1996) The NCEP/NCAR 40-Year Reanalysis Project, Bull. Amer. Meteor. Soc., 77 (3), 437–471.
  • Kapiński J., Ostrowski R., Piotrowska D., Rózyński R., Skaja M., Szmytkiewicz M. (2004) Assessment of the shore condition and executive recommendations on artificial nourishment aimed at reconstruction of the dike foreground in Kadyny (ZW km 30.4–30.8) and the railway tracks in the region of Tolkmicko (ZW km 22.6–23.6), expert opinion C2-9/2004, IBWPAN, Gdańsk, 16 pp. (in Polish).
  • Nielsen P. (2009) Coastal and Estuarine Processes, Advanced Series on Ocean Engineering – Volume 29, World Scientific Publishing Co. Pte. Ltd., 343 pp.
  • Ostrowski R., Pruszak Z., Skaja M., Szmytkiewicz M., Trifonova E., Keremedchiev S., Andreeva N. (2010) Hydrodynamics and Lithodynamics of Dissipative and Reflective Shores in View of Field Investigations, Archives of Hydro-Engineering & Environmental Mechanics, 57 (3–4), 219–241.
  • Pruszak Z., Szmytkiewicz P., Ostrowski R., Skaja M., Szmytkiewicz M. (2008) Shallow-water wave energy dissipation in a multi-bar coastal zone, Oceanologia, 50 (1), 43–58.
  • Podbereski B., Dubrawski R., Cieślak P. (2003) Documentation concerning the maintenance nourishment of the dike foreground in Krynica Morska at km ZW 84.4–87.3, WUPROHYD Sp. z o.o., Gdynia (in Polish).
  • Szmytkiewicz M. (1996) 2D velocity distributions in nearshore currents, Proc. Coastal Dynamics ’95, ASCE, New York, 366–376.
  • Szmytkiewicz M. (2002a) Wave-induced currents in the coastal zone, IBW PAN Publishers, Gdańsk, 235 pp. (in Polish).
  • Szmytkiewicz M. (2002b) Quasi 3D model of wave-induced currents in coastal zone, Archives of Hydro-Engineering & Environmental Mechanics, 49 (1), 57–81.
  • van Rijn L., Soulsby R., Hoekstra P., Davies A. G. (2005) SANDPIT, Sand Transport and Morphology of Offshore Mining Pits, Aqua Publications, The Netherlands, 156 pp.
  • von Storch H., Langenberg H., Feser F. (2000) A spectral nudging technique for dynamical downscaling purposes, Mon. Weather Rev., 128, 3664–3673.
  • WAMDI Group (1988) TheWAM model – A Third Generation OceanWave Prediction Model, J. Phys. Oceanography, 18, 1776–1810.
  • Weisse R., von Storch H., Callies U., Chrastansky A., Feser F., Grabemann I., Günther H., Plüss A., Stoye T., Tellkamp J., Winterfeldt J., Woth K. (2009) Regional meteorological-marine reanalyses and climate change projections. Results for Northern Europe and potential for coastal and offshore applications, Bull. Amer. Meteor. Soc., 90 (6), 849–860.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-13de1518-6d2b-45ad-b8df-3c0a845a6e77
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