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ENLACE

Ondas
Partilhar

ENLACE will explore process-based models to identify the best strategy to simulate long-term coastal evolution of sandy coasts. That strategy will balance reductionism and synthesis to capture behaviors that provide the explanatory and predictive capabilities at an ‘appropriate complexity’ level. For that, a series of state of the art process-based models will be coupled to integrate both longshore (ShorelineS model) and cross-shore (XBeach-Duna coupled models) processes. The novel approach proposed within ENLACE will holistically explore long-term evolution of sandy coasts by also integrating aeolian processes and extending the cross-shore processes to the emerged coastal barrier. The results will contribute to predicting long-term coastal morphodynamics and guide policy makers and managers

SDG 13: Ação Climática
SDG 14: Proteger a Vida Marinha
SDG 15: Proteger a Vida Terrestre

SDG 13.1
SDG 13.2
SDG 13.3
SDG 17.6
SDG 17.14

218.027,14 € / 229.527,14 €

Fundação para a Ciência e Tecnologia

scotero@ualg.pt

Sobre

Predictions of long-term coastal evolution on decadal timescales are increasingly sought for adaptation planning in light of climate change and sea-level rise. Present and future needs demand the extension of process-based models beyond short-term time scales to assessment of long-term coastal changes. These models are already able to provide detailed analysis and prediction of morphological changes at short-term time scales. Still, further investigation is needed to bridge the gap between short-term hydrodynamic and transport processes, varying over hours to days, and morphological changes, often taking place over much longer periods. Thus, the importance of studying the medium to long-term (years to decades) morphological change and its effect on coastal sustainability stresses the need for new methodologies to support predictions over these time scales.

Partners: 

Ceará State University: Davis Pereira de Paula | Francisco Rodrigo Cunha de Sousa; 

Ciencia Viva Center of Algarve: Emanuel Reis | Luis Gonçalves; 

Project Consultants: Dano Roelvink (IHE-Delft) | Irene Delgado (Edge Hill University) | Derek Jackson (Ulster University) | Theocharis Plomaritis (University of Cadiz)

Palavras-chave
Cross-shore processes
Process-based models
Longshore process
Aeolian processes

Resultados

Roelvink, D., McCall, R., Costas, S., & VAN DER LUGT, M. (2019). CONTROLLING SWASH ZONE SLOPE IS KEY TO BEACH PROFILE MODELLING. Coastal Sediments 2019. Apresentado em. WORLD SCIENTIFIC. https://doi.org/10.1142/9789811204487_0014
Costas, S., & Kombiadou, K. (2019). On the genesis of new ridges at prograding coasts.
Costas, S., Kombiadou, K., & Roelvink, D. (2019). HOW DO MULTIPLE BEACH AND DUNE RIDGES EMERGE AND EVOLVE IN PROGRADING COASTS? Coastal Sediments 2019, 2282-2295. WORLD SCIENTIFIC. https://doi.org/10.1142/9789811204487_0195

Equipa

Outros Membros / Parceiros

Dano Roelvink
Cargo - Consultores
Irene Delgado
Cargo - Consultores
Derek Jackson
Cargo - Consultores
Theocharis Plomatiris
Cargo - Consultores