Extreme wave runup over the steep rocky cliffs of Banneg Island, France - Archive ouverte HAL
Communication Dans Un Congrès Année : 2016

Extreme wave runup over the steep rocky cliffs of Banneg Island, France

Résumé

Ocean waves are constantly shaping coastal morphology. When storm waves are combined with high water levels, the wave runup can reach unexpected elevations and become a threat for coastal populations, through dike overtopping, dune breaching or accelerated coastline erosion. Therefore, the wave runup has been largely investigated over the last decades for its key importance in coastal engineering and risk management. Although the strongly nonlinear nature of swash flows prevented theoreticians and modellers from accurately predicting its kinematics, numerous laboratory and field studies provided a means for establishing wave runup empirical formula, which are now commonly used in engineering practice. However, most of the field studies only concerned gently sloping sand beaches, and run-up formula have barely been validated against field observations in steep rocky environments, where data are still very sparse. This study presents water elevation data acquired with pressure sensors solidly fixed to the bedrock of Banneg Island, France, during winter 2013/14. Offshore wave parameters and water levels were also measured during this winter and recorded storm events with Hm0 up to 9 m in spring tide conditions, which caused flooding and boulder transports across the island. A methodology to infer R 2% from the local pressure measurements was implemented. The 4-month time-series of run-up measurements at the top and at the bottom of subvertical cliff profiles (with slopes ranging from 20% to 30%) were compared with offshore wave parameters and revealed a strong dependence of R 2% to the Hunt parameter (ξ.Hm0). Several period parameters based on the spectral moments were also tested to compute ξ and the best correlations were obtained with T(m0,-1). Finally, the exceptional run-up values (up to 8 m) measured at the cliff top during the major storms allowed to test the validity of existing run-up formula for a range of conditions that exceeds any other observations, to our knowledge.
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Dates et versions

hal-01452533 , version 1 (08-02-2017)

Identifiants

  • HAL Id : hal-01452533 , version 1

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Guillaume Dodet, Fabien Leckler, Serge S. Suanez, Fabrice Ardhuin. Extreme wave runup over the steep rocky cliffs of Banneg Island, France. AGU Fall Meeting, Dec 2016, San Francisco, United States. ⟨hal-01452533⟩
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