Impacts of Coastal Infrastructure on Shoreline Response to Major Hurricanes in Southwest Louisiana

Author:

Cadigan Jack A.,Bekkaye Jasmine H.,Jafari Navid H.,Zhu Ling,Booth Ashley R.,Chen Qin,Raubenheimer Britt,Harris Brian D.,O’Connor Chris,Lane Robert,Kemp G. Paul,Day Jason N.,Day John W.,Ulloa Hanssel Omar

Abstract

The Rockefeller Wildlife Refuge, located along the Chenier Plain in Southwest Louisiana, was the location of the sequential landfall of two major hurricanes in the 2020 hurricane season. To protect the rapidly retreating coastline along the Refuge, a system of breakwaters was constructed, which was partially completed by the 2020 hurricane season. Multi-institutional, multi-disciplinary rapid response deployments of wave gauges, piezometers, geotechnical measurements, vegetation sampling, and drone surveys were conducted before and after Hurricanes Laura and Delta along two transects in the Refuge; one protected by a breakwater system and one which was the natural, unprotected shoreline. Geomorphological changes were similar on both transects after Hurricane Laura, while after Delta there was higher inland sediment deposition on the natural shoreline. Floodwaters drained from the transect with breakwater protection more slowly than the natural shoreline, though topography profiles are similar, indicating a potential dampening or complex hydrodynamic interactions between the sediment—wetland—breakwater system. In addition, observations of a fluidized mud deposit in Rollover Bayou in the Refuge are presented and discussed in context of the maintenance of wetland elevation and stability in the sediment starved Chenier Plain.

Publisher

Frontiers Media SA

Subject

Urban Studies,Building and Construction,Geography, Planning and Development

Reference45 articles.

1. Increasing Magnitude of Hurricane Rapid Intensification in the Central and Eastern Tropical Atlantic;Balaguru;Geophys. Res. Lett.,2018

2. December)Geotechnical Characterization of a Saline Wetland with Implications towards Quantifying Peat Collapse;Cadigan;AGU Fall Meet. Abstr.,2020

3. Coastal Wetland Vulnerability to Relative Sea-Level Rise: Wetland Elevation Trends and Process Controls;Cahoon,2006

4. Regional Strategies for Coastal Restoration along the Louisiana Chenier Plain;Campbell;J. coastal Res.,2005

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