scholarly journals Nearshore sandbar switching episodes and their relationship with coastal erosion at the curonian spit, Baltic Sea

Oceanologia ◽  
2021 ◽  
Author(s):  
Rasa Janušaitė ◽  
Darius Jarmalavičius ◽  
Donatas Pupienis ◽  
Gintautas Žilinskas ◽  
Laurynas Jukna
Baltica ◽  
2015 ◽  
Vol 28 (1) ◽  
pp. 41-50 ◽  
Author(s):  
Alexander Sergeev ◽  
Vadim Sivkov ◽  
Vladimir Zhamoida ◽  
Daria Ryabchuk ◽  
Albertas Bitinas ◽  
...  

This article is devoted to the results of study of organic rich sediments of the Curonian Spit marine coast. Radiocarbon dating of relict tree stumps, as well as buried peat and palaeosols, found in the Russian part of the Curonian Spit (around the villages of Lesnoy and Rybachy) and in the vicinity of Zelenogradsk indicate the formation of these sediments during the large age scale since 7300 by 300 cal. BP and represent different stages of the Curonian Spit formation in Holocene. Organic rich sediments are objects of interest in terms of environmental protection, potential accumulators of oil (or its products) pollution, indicators of intensity of coastal erosion, also they play a suitable role for the understanding and reconstruction of the geological evolution of the whole Curonian Spit and Lagoon during the Late Glacial and Holocene.


Author(s):  
Nikolay Lugovoy ◽  
Nikolay Lugovoy ◽  
Askar Ilyasov ◽  
Askar Ilyasov ◽  
Elena Pronina ◽  
...  

The paper describes application of the terrestrial laser scanner for investigation of coastal dynamics of the Svetlogorskaya Bay, Baltic Sea. Methods of investigation and results of surveys repeated over the two consecutive years for quantification of coastal erosion and slope processes within the coastal zone are presented.


2017 ◽  
Vol 62 (1) ◽  
Author(s):  
Regina MORKŪNAITĖ ◽  
BAUTRĖNAS ◽  
Algimantas ČESNULEVIČIUS ◽  
Nikita DOBROTIN ◽  
Aldona BAUBINIENĖ ◽  
...  

2021 ◽  
Author(s):  
Ralf Weisse ◽  
Inga Dailidiene ◽  
Birgit Hünicke ◽  
Kimmo Kahma ◽  
Kristine Madsen ◽  
...  

Abstract. There are a large number of geophysical processes affecting sea level dynamics and coastal erosion in the Baltic Sea region. These processes operate on a large range of spatial and temporal scales and are observed in many other coastal regions worldwide. Together with the outstanding number of long data records, this makes the Baltic Sea a unique laboratory for advancing our knowledge on interactions between processes steering sea level and erosion in a climate change context. Processes contributing to sea level dynamics and coastal erosion in the Baltic Sea include the still ongoing visco-elastic response of the Earth to the last deglaciation, contributions from global and North Atlantic mean sea level changes, or from wind waves affecting erosion and sediment transport along the subsiding southern Baltic Sea coast. Other examples are storm surges, seiches, or meteotsunamis contributing primarily to sea level extremes. All such processes have undergone considerable variations and changes in the past. For example, over the past about 50 years, the Baltic absolute (geocentric) mean sea level rose at a rate slightly larger than the global average. In the northern parts, due to vertical land movements, relative sea level decreased. Sea level extremes are strongly linked to variability and changes in the large-scale atmospheric circulation. Patterns and mechanisms contributing to erosion and accretion strongly depend on hydrodynamic conditions and their variability. For large parts of the sedimentary shores of the Baltic Sea, the wave climate and the angle at which the waves approach the nearshore are the dominant factors, and coastline changes are highly sensitive to even small variations in these driving forces. Consequently, processes contributing to Baltic sea level dynamics and coastline change are expected to vary and to change in the future leaving their imprint on future Baltic sea level and coastline change and variability. Because of the large number of contributing processes, their relevance for understanding global figures, and the outstanding data availability, we argue that global sea level research and research on coastline changes may greatly benefit from research undertaken in the Baltic Sea.


Water ◽  
2020 ◽  
Vol 12 (11) ◽  
pp. 3234
Author(s):  
Julius Taminskas ◽  
Rasa Šimanauskienė ◽  
Rita Linkevičienė ◽  
Jonas Volungevičius ◽  
Gintarė Slavinskienė ◽  
...  

Coastal dunes are recognized as one of the most threatened ecosystems, the formation of which mainly depends on two opposite processes—sand dunes overgrowth and formation of open dunes. The application of cost-effective remote sensing methods permits monitoring the interaction of these two processes over a large area and long periods of time. Therefore in this study we assessed the links between hydro-meteorological parameters and the normalized difference vegetation index (NDVI) in Curonian spit coastal dunes landscape-a creation of human and nature integrity situated in the South eastern part of the Baltic Sea. Time series of NDVI (2000–2019) were obtained from the moderate resolution imaging spectro-radiometer and compared with hydro-meteorological parameters in three different ecosystems—forest, herbaceous and open sands. Moderate and strong positive correlation between NDVI and average wind speed was detected in non-forested ecosystems. Moderate positive correlation was detected between NDVI and the Baltic sea water level in all three analyzed ecosystems. Moderate positive correlation between NDVI and air temperature was found in forest ecosystem. This confirms that NDVI could be treated as an appropriate indicator, showing the interaction of coastal dunes overgrowth and formation of open dunes, and could be applied in its management that should be reconsidered under nowadays climate change.


Author(s):  
Nikolay Lugovoy ◽  
Nikolay Lugovoy ◽  
Askar Ilyasov ◽  
Askar Ilyasov ◽  
Elena Pronina ◽  
...  

The paper describes application of the terrestrial laser scanner for investigation of coastal dynamics of the Svetlogorskaya Bay, Baltic Sea. Methods of investigation and results of surveys repeated over the two consecutive years for quantification of coastal erosion and slope processes within the coastal zone are presented.


Oceanology ◽  
2021 ◽  
Vol 61 (1) ◽  
pp. 119-126
Author(s):  
G. S. Kharin ◽  
I. P. Zhukovskaya ◽  
S. M. Icatchenko ◽  
D. V. Eroshenko
Keyword(s):  

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