Application of the high-resolution wave model for forecasting 1D sediment transport and beach inundation as a component of a short-term storm warning system

被引:1
作者
Sapiega, Patryk [1 ]
Zalewska, Tamara [1 ]
机构
[1] Natl Res Inst, Inst Meteorol & Water Management, Waszyngtona 42, PL-81342 Gdynia, Poland
关键词
SWAN; SWANOneSed; Ruggiero formula; Wave run-up; Sediment transport; Coastal erosion; Polish coast; Southern baltic; Warning system; SOUTHERN BALTIC SEA; COASTAL EROSION; RUN-UP; VARIABILITY; DYNAMICS; XBEACH; SWASH; DUNES; SETUP; SPIT;
D O I
10.1016/j.envsoft.2024.106089
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The main purpose of the research was to develop appropriate tools for forecasting the effects of storms. The use of the high -resolution SWAN wave model powered by AROME wind fields to couple it with the SWANOneSed sediment transport model and a model using the Ruggiero formula, predicting the extent of the flooded shore, allowed the development of reliable tools for forecasting the effects of storms. Validation using qualitative analysis showed that the results obtained from the coupled SWANOneSed model are characterized by high consistency in intensification and direction of changes. The model using the Ruggiero formula obtained a high value of the correlation coefficient, i.e. 0.970 and 0.992 for the Satba & lstrok; tyk-Xbeach model data, based on the Hunt &Mase formula, and the high -resolution Pleiades Neo satellite data, respectively. By combining models from the SWAN family, i.e. the SWAN and SWANOneSed wave model and a model using the Ruggiero formula, it was possible to obtain reliable and compatible tools enabling an uninterrupted and synchronized operational process of generating forecasts of storm effects.
引用
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页数:16
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共 100 条
  • [11] Bruun P., 1962, J. Waterw. Harb. Div., V88, P117, DOI DOI 10.1061/JWHEAU.0000252
  • [12] Application of XBeach to model a storm response on a sandy spit at the southern Baltic
    Bugajny, Natalia
    Furmanczyk, Kazimierz
    Dudzinska-Nowak, Joanna
    [J]. OCEANOLOGICAL AND HYDROBIOLOGICAL STUDIES, 2015, 44 (04) : 552 - 562
  • [13] Modelling morphological changes of beach and dune induced by storm on the Southern Baltic coast using XBeach (case study: Dziwnow Spit)
    Bugajny, Natalia
    Furmanczyk, Kazimierz
    Dudzinska-Nowak, Joanna
    Paplinska-Swerpel, Barbara
    [J]. JOURNAL OF COASTAL RESEARCH, 2013, : 672 - 677
  • [14] CERC - U.S. Army, 1984, Shore Protection Manual
  • [15] Chubarenko B., 2016, Managing Risk to Coastal Regions and Communities in a Changing World
  • [16] Cieslikiewicz W., 2003, Coastal Engineering 2002: Solving Coastal Conundrums, P176
  • [17] Coastal morphodynamic emulator for early warning short-term forecasts
    de Melo, Willian Weber
    Pinho, Jose
    Iglesias, Isabel
    [J]. ENVIRONMENTAL MODELLING & SOFTWARE, 2023, 165
  • [18] Wave run-up prediction and observation in a micro-tidal beach
    Di Luccio, Diana
    Benassai, Guido
    Budillon, Giorgio
    Mucerino, Luigi
    Montella, Raffaele
    Carratelli, Eugenio Pugliese
    [J]. NATURAL HAZARDS AND EARTH SYSTEM SCIENCES, 2018, 18 (11) : 2841 - 2857
  • [19] Dingemans M.W., 1997, Water Wave Propagation over Uneven Bottoms, V23
  • [20] Dubrawski R., 2006, Przyszlosc ochrony polskich brzegow morskich