2019
DOI: 10.1002/esp.4692
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High‐efficiency gravel longshore sediment transport and headland bypassing over an extreme wave event

Abstract: Gravel beaches are common throughout the high latitudes, but few studies have examined gravel transport rates, in particular at high energy levels, and no studies have quantified gravel transport around headlands. Here, we present the first complete sediment budget, including supra‐, inter‐ and sub‐tidal regions of the beach, across multiple headland‐separated gravel embayments, combined with hydrodynamic observations, over an extreme storm sequence, representing at least a 1‐in‐50‐year event. Unprecedented er… Show more

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Cited by 23 publications
(42 citation statements)
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References 28 publications
(70 reference statements)
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“…13c) may have contributed to the destruction of an old fishing village [58,59], in addition to aggregate dredging of the shoreface. Short-term changes in longshore flux, forced by variations in the bi-directional wave climate, result in rapid changes in beach width due to rotation [47,48], particularly near headlands ( Fig. 13b, d).…”
Section: Results Site 2: Start Baymentioning
confidence: 99%
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“…13c) may have contributed to the destruction of an old fishing village [58,59], in addition to aggregate dredging of the shoreface. Short-term changes in longshore flux, forced by variations in the bi-directional wave climate, result in rapid changes in beach width due to rotation [47,48], particularly near headlands ( Fig. 13b, d).…”
Section: Results Site 2: Start Baymentioning
confidence: 99%
“…The method shown in Fig. 7 is suitable for estimating long-term trends and short-term variability in longshore transport within an embayment, e.g., at Start Bay in the UK, where multi-decadal unidirectional flux is overlain by short-term oscillations [47,48]. However, for cross-shore dominated embayments, where rotation is insignificant, such as Perranporth [49], a different approach is required to account for alongshore sediment redistribution.…”
Section: Trend Change Rotation Sources/sinks and Alongshore Balancimentioning
confidence: 99%
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