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The anticipated rise in sea levels due to climate change will result in coastlines receding worldwide through erosion. This is a known phenomenon that can in principle be calculated and predicted based on a given sea-level rise, by means of the so-called Bruun effect. However, things are a little more complicated when it comes to coastlines in the vicinity of inlets, such as river mouths, lagoons and estuaries. These places are affected by other factors, such as changes in rainfall due to climate change, and certain compensating effects (basin infilling).
Accurate model
Until now, science has lacked a model that takes all these effects into account in the calculations of a coastline’s future development, even though a demand for this existed among engineers, coastal managers and planners. The majority of coastline prognoses only took the Bruun effect into consideration.
Scientist Rosh Ranasinghe, employed as associate professor at TU Delft and at UNESCO-IHE, has now succeeded in developing a new model that is able to produce much more accurate prognoses. He did so together with researchers of the faculty of Civil Engineering and Geosciences at TU Delft, UNESCO-IHE and knowledge institution Deltares. With the model, it is possible to make accurate predictions quickly – within a few minutes – of how the coastline will develop in the vicinity of inlets as a result of rising sea-levels.
Work in progress: Rosh Ranasinghe measuring on Narrabeen Beach, Sydney
Credit University of Delft
The new model was in turn applied to four different and representative coastal areas (in Vietnam and Australia). The research showed that only 25 to 50 per cent of anticipated coastline change in these areas can be predicted using the Bruun effect. The other processes that occur in the vicinity of inlets are of at least equal importance and coastline change in these areas as a result of rising sea levels has until now been strongly underestimated.
The research is being partly supported by the Deltares Coastal Maintenance Research Programme.
More information
‘Climate-change impact assessment for inlet-interrupted coastlines’
Roshanka Ranasinghe(1,2,3*), Trang Minh Duong (1,3), Stefan Uhlenbrook (1,2), Dano Roelvink (1,2) and Marcel Stive (2),
1 UNESCO-IHE, Department of Water Engineering
2 TU Delft, faculteit Civiele Techniek en Geowetenschappen
3 Deltares, Harbour, Coastal and Offshore Engineering
DOI: 10.1038/nclimate1664
http://www.nature.com/nclimate/journal/vaop/ncurrent/full/nclimate1664.html
Contacts and sources:
Roy Meijer
Delft University of Technology