How to translate text using browser tools
26 May 2020 Tidal Patterns and Sediment Dynamics in a Hypertidal Estuary Influenced by a Tidal Power Station
Rajae Rtimi, Aldo Sottolichio, Pablo Tassi
Author Affiliations +
Abstract

Rtimi, R.; Sottolichio, A. and Tassi, P., 2020. Tidal patterns and sediment dynamics in a hypertidal estuary influenced by a tidal power station. In: Malvárez, G. and Navas, F. (eds.), Global Coastal Issues of 2020. Journal of Coastal Research, Special Issue No. 95, pp. 1520–1524. Coconut Creek (Florida), ISSN 0749-0208.

The Rance estuary is a relatively small low-inflow steep-sided ria, located in the Brittany coast of northern France, with a maximum spring tidal range of 13.5 m at the mouth. Taking advantage of this hypertidal regime, the first and largest operational tidal power station in the world was built at the estuary mouth and is in operation since the 1960s. Despite a well-known effect of the plant on the damping of estuarine water levels, little attention has been given to the propagation of the tidal wave along the estuary. Moreover, net siltation has been reported by several observations, but there is no specific knowledge on the role of the plant on sedimentation. In this study, tidal wave patterns and sediment dynamics are analyzed in this particular man-engineered system. A numerical model, based on a two-dimensional depth-averaged approach is implemented to predict the tide propagation and tidal currents along the estuary. Numerical results are analyzed and discussed to highlight the role of the plant on the transformation of the tidal wave in the estuary and its possible consequences on sediment dynamics and morphological evolution.

©Coastal Education and Research Foundation, Inc. 2020
Rajae Rtimi, Aldo Sottolichio, and Pablo Tassi "Tidal Patterns and Sediment Dynamics in a Hypertidal Estuary Influenced by a Tidal Power Station," Journal of Coastal Research 95(sp1), 1520-1524, (26 May 2020). https://doi.org/10.2112/SI95-293.1
Received: 31 March 2019; Accepted: 13 February 2020; Published: 26 May 2020
KEYWORDS
sediment dynamics
Tidal power plant
tides asymmetry
RIGHTS & PERMISSIONS
Get copyright permission
Back to Top