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Coastal Storm Risk Reduction Using Steel Mesh Revetments: Field Application and Preliminary Physical Experiments

  • Geobrugg AG

Research output: Contribution to journalArticlepeer-review

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Abstract

We study coastal storm risk reduction using a steel mesh revetment system known as Tecco Cell (TC). This system consists of high-tensile stainless steel mesh filled with rock and securely fastened with tension rods. This coastal defence system is implemented in Beesands (UK), and its performance is studied here through preliminary laboratory physical modelling. The TC revetment in Beesands was installed in 2016 and has effectively protected the coast since then. We conducted 32 physical tests to assess performance criteria of a TC model in comparison to a rock armour (RA) model. Wave runup is used as the performance criterion in this study, as it is one of the key factors in coastal risk reduction research. Results showed that the TC model consistently yielded smaller runup than the RA model, with an average runup reduction of 15%. The mean spectral ratio index was employed as a measure of wave reflection and oscillations. Results indicated a mean index of 20.5 for the RA model and 3.8 for the TC model, demonstrating the potential for higher stability with the TC revetment. We established relationships between dimensionless runup and surf similarity and formulated a runup law.
Original languageEnglish
Pages (from-to)289-308
Number of pages20
JournalPure and Applied Geophysics
Volume182
Issue number1
Early online date19 Dec 2024
DOIs
Publication statusPublished - 31 Jan 2025

Data Availability Statement

No datasets were generated or analysed during the current study.

Funding

We are grateful to the laboratory technicians at the University of Bath, particularly Mr William Bazeley, for their support during the physical modelling of this research. We acknowledge Alan Holiday for making available his photo of Chesil Beach ( https://alanholiday.weebly.com/may-6th.html ). Our colleagues, Peter McCourt, and Urs Dornbierer, have been very supportive throughout this research, for which we are thankful. The support from the contractor team (Landmarc Environmental Engineering), Marcus Evans and William Evans, during the fieldwork is gratefully acknowledged. This manuscript benefited from constructive review comments from three anonymous reviewers for which we are sincerely grateful.

Funders
Landmarc Environmental Engineering
Marcus Evans and William Evans

    Keywords

    • Coastal risk reduction
    • Revetment
    • coastal defence
    • physical modelling
    • runup
    • storms

    ASJC Scopus subject areas

    • Geophysics
    • Geochemistry and Petrology

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