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Tytuł artykułu

Variability and correlations of shoreline and dunes on the southern Baltic coast (CRS Lubiatowo, Poland)

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper analyses the results of field investigations into the evolution of the shoreline and dune toe positions in a multi-bar, dissipative coastal zone. The correlations between the changes in the shoreline and the dune toe range from -0.4 to 0.8. It is most often the case that the dune toe is stable while the shoreline moves. Consistent cross-shore migration is slightly more likely to happen than the divergent or convergent movements of both lines. Shoreline retreat and advance attain respective rates of 0.7 m day-1 and 0.4 m day-1. Deep-water wave energy of about 50 kJ m-1 constitutes the boundary between shore accumulation and erosion.
Czasopismo
Rocznik
Strony
97--120
Opis fizyczny
Bibliogr. 29 poz., tab., wykr.
Twórcy
autor
autor
  • Institute of Hydro-Engineering, Polish Academy of Sciences (IBW PAN), Kościerska 7, PL-80-328 Gdańsk, Poland, zbig@ibwpan.gda.pl
Bibliografia
  • 1.Aagaard T., Greenwood B., 2008, Infragravity wave contribution to surf zone sediment transport - the role of advection, Mar. Geol., 251 (1-2), 1-14.
  • 2.Baquerizo A., Losada M., 2008, Human interaction with large scale coastal morphological evolution. An assessment of the uncertainty, Coast. Eng., 55 (7-8), 569-580.
  • 3.Bobykina V., Boldyrev V., 2008, Tendency in shore dynamics in the Kaliningrad Oblast according to five year monitoring information, Proc. Int. Conf. "Integrated management, sustainable development indicators, spatial planning and monitoring of the South-Eastern Baltic coastal regions", Kaliningrad, 26 -30 March, (CD, in Russian).
  • 4.Boldyrev V., 2008, State of the sea bottom in the littoral zones as a principal indicator of the shore dynamics, Proc. Int. Conf. "Integrated management, sustainable development indicators, spatial planning and monitoring of the South-Eastern Baltic coastal regions", Kaliningrad, 26-30 March, (CD, in Russian).
  • 5.Coco G., Huntley D.A., O'Hare T. J., 1999, Beach cusp formation: analysis of a self-organisation model, Proc. Coastal Sediments '99, Hauppauge, Long Island, 21-23 June, 2190-2205.
  • 6.Coco G., Huntley D.A., O'Hare T. J., 2001, Regularity and randomness in the formation of beach cusps, Mar. Geol., 178 (1-4), 1-9.
  • 7.Dette H., Uliczka K., 1987, Prototype investigation on the time-dependent dune recession and beach erosion, Coastal Sediments Conf. Proc., New Orleans, 1430-1444.
  • 8.Dubrawski R., Zawadzka E. (eds.), 2006, Future of protection of the Polish sea shores, Wyd. IM, Gdańsk, 302 pp., (in Polish).
  • 9.Girjatowicz J., 2009, Monthly and seasonal characteristics of water level on the Polish coast of the Baltic Sea, Inż. Mor. Geotech. No. 6, 445-451, (in Polish).
  • 10.Guillen J., Stive M. J. F., Capobianco M., 1999, Shoreline evolution of the Holland coast on a decadal scale, Earth Surf. Proc. Land., 24 (6), 517-536.
  • 11.Hanson H., Larson M., 1987, Comparison of analytic and numerical solution of the one-line model of shoreline changes, Coastal Sediments Conf. Proc., New Orleans, 500-514.
  • 12.Hobbs C., Milligan D., Hardaway C., 1999, Long-term trends and short-term variability in shoreline changes rates: South Virginia, Proc. Coastal Sediments '99, Vol. 2, Hauppauge, Long Island, 21-23 June, 1268-1283.
  • 13.Hsu T.-W., Ou S.-H., Wang S.-K., 1994, On the prediction of beach changes by a new 2-D empirical eigenfunction model, Coast. Eng., 23 (3-4), 255-270.
  • 14.Komar P., 1998, Beach processes and sedimentation, Prentice Hall, Upper Saddle River, N.J., 544 pp.
  • 15.Kroon A., Larson M., Möller I., Yokoki H., RóżyńskiG., Cox J., Larraude P., 2008, Statistical analysis of coastal morphological data sets over seasonal to decadal time scales, Coast. Eng., 55 (7-8), 581-600.
  • 16.Kuriyama Y., Ito Y., Yanagishima S., 2008, Medium-term variation of bar properties and their linkages with environmental factors at Hasaki, Japan, Mar. Geol., 248 (1-2), 1-10.
  • 17.Maiti S., Bhattacharya A.K., 2009, Shoreline changes analysis and application to prediction: a remote sensing and statistics based approach, Mar. Geol., 257 (1 -4), 11-23.
  • 18.Miller J.K., Dean R.G., 2007, Shoreline variability via empirical orthogonal function analysis: Part I temporal and spatial characteristics, Coast. Eng., 54 (2), 111-131.
  • 19.Pruszak Z., RóżyńskiG., Szmytkiewicz M., Skaja M., 1999, Quasi seasonal morphological shore evolution response to variable wave climate, Proc. Coastal Sediments '99, Vol. 2, Hauppauge, Long Island, 21-23 June, 1081-1093.
  • 20.Pruszak Z., RóżyńskiG., Szmytkiewicz M., Skaja M., 2007, Field observation of edge waves and beach cusps on the South Baltic Sea coast, J. Coastal Res., 23 (4), 846-860.
  • 21.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.
  • 22.Pruszak Z., Zawadzka E., 2005, Vulnerability of Poland's coast to sea-level rise, Coast. Eng. J., 47 (2-3), 131-155.
  • 23.Quartel S., Kroon A., Ruessink B.G., 2008, Seasonal accretion and erosion patterns of a microtidal sandy beach, Mar. Geol., 250 (1-2), 19-33.
  • 24.Reeve D.E., Fleming C.A., 1997, A statistical-dynamical method for predicting long term coastal evolution, Coast. Eng., 30 (3-4), 259-280.
  • 25.RóżyńskiG., 2003, Data-driven modelling of multiple longshore bars and their interactions, Coast. Eng., 48 (3), 151-170.
  • 26.Stive M. J. F., Aarninkhoff S.G. J., Hamm L., Hanson H., Larson M., Wijnberg K., Nicholls R., Capobianco M., 2002, Variability of shore and shoreline evolution, Coast. Eng., 47 (2), 211-235.
  • 27.Thornton E.B., MacMahan J., Sallanger A.H., 2007, Rip currents, mega-cusps and eroding dunes, Mar. Geol., 240 (1-4), 151-167.
  • 28.Van Rijn L.C., 2009, Prediction of dune erosion due to storms, Coast. Eng., 56 (4), 441-457.
  • 29.Wright L.D., Short A.D., 1984, Morphodynamic variability of surf zones and beaches: a synthesis, Mar. Geol., 56 (1-4), 94-118.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS8-0008-0018
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