Modelling of periodic wave transformation in the inner surf zone |
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Authors: | P. Bonneton |
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Affiliation: | aDepartment of Geology and Oceanography, UMR CNRS EPOC, University of Bordeaux I, 33405 Talence, France |
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Abstract: | In this paper, we analyse the ability of the nonlinear shallow-water (NSW) equations to predict wave distortion and energy dissipation of periodic broken waves in the inner surf zone. This analysis is based on the weak-solution theory for conservative equations. We derive a new one-way model, which applies to the transformation of non-reflective periodic broken waves on gently sloping beaches. This model can be useful to develop breaking-wave parameterizations (in particular broken-wave celerity expression) in both time-averaged wave models and time-dependent Boussinesq-type models. We also derive a new wave set-up equation which provides a simple and explicit relation between wave set-up and energy dissipation. Finally, we compare numerical simulations of both, the NSW model and the simplified one-way model, with spilling wave breaking experiments and we find a good agreement. |
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Keywords: | Surf zone Broken wave Bore Shock Nonlinear shallow-water equations Saint Venant equations One-way equation Weak solution Energy dissipation Wave set-up |
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