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An approach to assess flooding and erosion risk for open beaches in a changing climate

Abstract: This paper examines the vulnerability to flooding and erosion of four open beach study sites in Europe. A framework for the quantitative estimation of present and future coastal flood and erosion risks is established using methods, data and tools from across a range of disciplines, including topographic and bathymetric data, climate data from observation, hindcast and model projections, statistical modelling of current and future climates and integrated risk analysis tools. Uncertainties in the estimation of future coastal system dynamics are considered, as are the consequences for the inland systems. Different implementations of the framework are applied to the study sites which have different wave, tidal and surge climate conditions. These sites are: Santander, Spain—the Atlantic Ocean; Bellocchio, Italy—the Adriatic Sea; Varna, Bulgaria—the Black Sea; and the Teign Estuary, UK—the northern Atlantic Ocean. The complexity of each system is first simplified by sub-division into coastal “impact units” defined by homogeneity in the local key forcing parameters: wave, wind, tide, river discharge, run-off, etc. This reduces the simulation to that of a number of simpler linear problems which are treated by applying the first two components of the Source–Pathway–Receptor–Consequence (S–P–R–C) approach. The case studies reveal the flexibility of this approach, which is found useful for the rapid assessment of the risks of flooding and erosion for a range of scenarios and the likely effectiveness of flood defences.

Other publications of the same journal or congress with authors from the University of Cantabria

 Fuente: Coastal Engineering, 2014, 87, 50-76

 Publisher: Elsevier

 Year of publication: 2014

 No. of pages: 27

 Publication type: Article

 DOI: http://dx.doi.org/10.1016/j.coastaleng.2013.11.009

 ISSN: 0378-3839,1872-7379

 European project: info:eu-repo/grantAgreement/EC/FP7/244104/EU/Innovative coastal technologies for safer European coasts in a changing climate/THESEUS/

Authorship

VILLATORO, M.

SILVA, R.

PAND, S.

TRIFONOVA, E.

CRISTINA IZAGUIRRE LASA

SIMMONDS, D.

REEVE, D.E.

MENDOZA, E.

MARTINELLI, L.

FORMENTIN, S.M.

GALIATSATOU, P.

EFTIMOVA, P.