Biological–physical interactions are fundamental to understanding and managing coastal dynamics
Biological–physical interactions are fundamental to understanding and managing coastal dynamics
There is an urgent need to address coastal dynamics as a fundamental interaction between physical and biological processes, particularly when trying to predict future biological–physical linkages under anticipated changes in environmental forcing. More integrated modelling, support for observational networks and the use of management interventions as controlled experimental exercises should now be vigorously pursued.
biological-physical interactions, coastal protection, nature-based solution, perspective, science, wetland
Solan, Martin
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Spencer, Tom
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Paterson, D.M.
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Unsworth, Christopher
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Christie, Elizabeth
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Blight, Andrew J.
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Brown, Jenny
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Brooks, Helen
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lichtman, I. Dougal
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Wei, Xiaoyan
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Li, Xiaorong
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Thorne, Peter
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Leyland, Julian
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Godbold, Jasmin
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Thompson, Charlie
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Williams, Megan
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Plater, Andy
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Moller, Iris
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Amoudry, L.O.
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July 2023
Solan, Martin
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Spencer, Tom
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Paterson, D.M.
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Unsworth, Christopher
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Christie, Elizabeth
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Blight, Andrew J.
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Brown, Jenny
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Brooks, Helen
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lichtman, I. Dougal
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Wei, Xiaoyan
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Li, Xiaorong
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Thorne, Peter
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Leyland, Julian
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Godbold, Jasmin
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Thompson, Charlie
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Williams, Megan
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Plater, Andy
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Moller, Iris
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Amoudry, L.O.
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Solan, Martin, Spencer, Tom, Paterson, D.M., Unsworth, Christopher, Christie, Elizabeth, Blight, Andrew J., Brown, Jenny, Brooks, Helen, lichtman, I. Dougal, Wei, Xiaoyan, Li, Xiaorong, Thorne, Peter, Leyland, Julian, Godbold, Jasmin, Thompson, Charlie, Williams, Megan, Plater, Andy, Moller, Iris and Amoudry, L.O.
(2023)
Biological–physical interactions are fundamental to understanding and managing coastal dynamics.
Royal Society Open Science, 10 (7), [230155].
(doi:10.1098/rsos.230155).
Abstract
There is an urgent need to address coastal dynamics as a fundamental interaction between physical and biological processes, particularly when trying to predict future biological–physical linkages under anticipated changes in environmental forcing. More integrated modelling, support for observational networks and the use of management interventions as controlled experimental exercises should now be vigorously pursued.
Text
rsos.230155
- Version of Record
More information
Accepted/In Press date: 21 June 2023
e-pub ahead of print date: 12 July 2023
Published date: July 2023
Additional Information:
Funding Information:
The intellectual basis for this contribution emerged from a workshop held at the University of St Andrews as part of the ‘Physical and biological dynamics of coastal processes and their role in coastal recovery (BLUE-coast)’ consortium of projects (NE/N015894/2, 2016–2021), funded by UKRI Natural Environment Research Council (UKRI NERC). Projects NE/N015703/1, 15614/1, 16009/1 and 15878/1 are acknowledged.
Funding Information:
Funded by UKRI Natural Environment Research Council (UKRI NERC). Projects NE/N015703/1, 15614/1, 16009/1 and 15878/1 are acknowledged.
Publisher Copyright:
© 2023 The Authors.
Keywords:
biological-physical interactions, coastal protection, nature-based solution, perspective, science, wetland
Identifiers
Local EPrints ID: 479482
URI: http://eprints.soton.ac.uk/id/eprint/479482
ISSN: 2054-5703
PURE UUID: bcbb0f4f-22b3-436a-baba-8615bf907169
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Date deposited: 25 Jul 2023 16:35
Last modified: 18 Mar 2024 03:20
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Contributors
Author:
Tom Spencer
Author:
D.M. Paterson
Author:
Christopher Unsworth
Author:
Elizabeth Christie
Author:
Andrew J. Blight
Author:
Jenny Brown
Author:
Helen Brooks
Author:
I. Dougal lichtman
Author:
Xiaoyan Wei
Author:
Xiaorong Li
Author:
Peter Thorne
Author:
Megan Williams
Author:
Andy Plater
Author:
Iris Moller
Author:
L.O. Amoudry
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