Title Spatio-temporal variability in coastal sediment texture in the vicinity of hydrotechnical structures along a sandy coast: southeastern Baltic Sea (Lithuania)
Authors Pupienis, Donatas ; Dubikaltienė, Aira ; Karlonienė, Dovilė ; Žilinskas, Gintautas ; Jarmalavičius, Darius
DOI 10.3390/jmse13071368
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Is Part of Journal of marine science and engineering.. Basel : MDPI. 2025, vol. 13, iss. 7, art. no. 1368, p. 1-19.. eISSN 2077-1312
Keywords [eng] beach–dune system ; geological framework ; jetties ; nourishment ; sediment
Abstract [eng] Hydrotechnical structures reshape sandy coasts by altering hydrodynamics and sediment transport, yet their long-term effects on sediment texture remain underexplored, particularly in the Baltic Sea. This study investigates the spatial and temporal variations in sediment grain size near two ports (Šventoji and Klaipėda) on the sandy Baltic Sea coast, considering the influence of jetties, nourishment, and geological framework. A total of 246 surface sand samples were collected from beach and foredune zones between 1993 and 2018. These samples were analyzed in relation to shoreline changes, hydrodynamic data, and geological context. The results show that sediment texture is most affected within 1–2 km downdrift and up to 4–5 km updrift of port structures. Downdrift areas tend to contain coarser, poorly sorted sediments because of erosion and the exposure of deeper strata, while updrift zones accumulate finer, well-sorted sands via longshore transport. In the long term, the geological framework controls sediment characteristics. In the medium term, introduced material that differs in grain size from natural beach sediments may alter the texture of the sediment, either coarsening or refining it. The latter slowly returns to its natural texture. Short-term changes are driven by storm events. These findings highlight the importance of integrating structural interventions, nourishment practices, and geological understanding for sustainable coastal management.
Published Basel : MDPI
Type Journal article
Language English
Publication date 2025
CC license CC license description