LAPSE:2023.33369
Published Article
LAPSE:2023.33369
Modelling Morphological Changes and Migration of Large Sand Waves in a Very Energetic Tidal Environment: Banks Strait, Australia
Christelle Auguste, Philip Marsh, Jean-Roch Nader, Irene Penesis, Remo Cossu
April 21, 2023
Abstract
Banks Strait, Tasmania, Australia, has been identified as a potential site for the deployment of tidal turbines. In this study, the characterization of sediment transport and large sand waves for this site is performed. Observations of bed level change collected from surveys in 2018 showed a migration of large sand waves over a period of nine months. Migration rates in an excess of one hundred meters for nine months were found, which are large compared to the rate reported at other coastal sites, by several meters per year. A validated hydrodynamic model is coupled with a morphodynamic model to perform sensitivity tests and identify what parameters influence migration to better understand sediment dynamic in the Banks Strait. Numerical analysis showed a constant shift of the sand waves profile in an eastward direction, consistent with the observations. This migration was strongly linked with tidal asymmetry, with a residual current flowing towards the east. The principal parameters driving the migration of sand waves in the Banks Strait were found to be sediment sorting, bed friction and residual current. This study gives new insights for the seabed of Banks Strait and provides an assessment of the natural variability of sediment for futures tidal farms deployments.
Keywords
numerical modelling, sand waves migration, sediment transport, tidal energy
Suggested Citation
Auguste C, Marsh P, Nader JR, Penesis I, Cossu R. Modelling Morphological Changes and Migration of Large Sand Waves in a Very Energetic Tidal Environment: Banks Strait, Australia. (2023). LAPSE:2023.33369
Author Affiliations
Auguste C: Australian Maritime College, University of Tasmania, Launceston, TAS 7250, Australia [ORCID]
Marsh P: Australian Maritime College, University of Tasmania, Launceston, TAS 7250, Australia
Nader JR: Australian Maritime College, University of Tasmania, Launceston, TAS 7250, Australia
Penesis I: Australian Maritime College, University of Tasmania, Launceston, TAS 7250, Australia
Cossu R: School of Civil Engineering, University of Queensland, St Lucia, QLD 4072, Australia [ORCID]
Journal Name
Energies
Volume
14
Issue
13
First Page
3943
Year
2021
Publication Date
2021-07-01
ISSN
1996-1073
Version Comments
Original Submission
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PII: en14133943, Publication Type: Journal Article
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LAPSE:2023.33369
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https://doi.org/10.3390/en14133943
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