Foredune erosion, overtopping and destruction in 2022 at Bengello Beach, southeastern Australia

The beach–foredune system at Bengello Beach has been monitored monthly to bimonthly at four profiles (P1–P4) since 1972 and documented the building of a foredune. This paper addresses the remarkable changes which occurred in 2022 as storm waves overtopped and trimmed this foredune at all profiles, t...

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Veröffentlicht in:Cambridge Prisms: Coastal Futures 2024, Vol.2, Article e7
Hauptverfasser: Oliver, Thomas S. N., Kinsela, Michael A., Doyle, Thomas B., McLean, Roger F.
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Sprache:eng
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Zusammenfassung:The beach–foredune system at Bengello Beach has been monitored monthly to bimonthly at four profiles (P1–P4) since 1972 and documented the building of a foredune. This paper addresses the remarkable changes which occurred in 2022 as storm waves overtopped and trimmed this foredune at all profiles, then later removed this entire feature at two of the profiles (P3, P4) but not the others (P1, P2). Wave parameters for these storm events, measured by deepwater and nearshore wave buoys, enable a comparison of storm characteristics and resulting beach–foredune impact. During the storm event which destroyed the foredune, nearshore wave height exceeded deepwater wave height, in contrast with other storms that year. The beach–foredune lost 78 m 3 /m in 2022 and the notable 1974 storms that impacted this coastline resulted in 95 m 3 /m volume loss. During 2023, beach recovery has occurred, but not rebuilt the foredune. It had persisted for ~40 years enduring many other severe storm events, and the coastal protection afforded by the dune system has been compromised. This highlights the need to consider dune morphology in assessments of erosion hazard and inundation risk along similar coastlines.
ISSN:2754-7205
2754-7205
DOI:10.1017/cft.2024.8