Reconstruction of short-term storm surge-driven increases in shallow coastal lake salinity using ostracod shell chemistry
Lucy R. Roberts (),
Jonathan A. Holmes,
David J. Horne,
Melanie J. Leng,
Carl D. Sayer,
Rhys G. O. Timms,
Katy Flowers,
Simon P. M. Blockley and
Andrea Kelly
Additional contact information
Lucy R. Roberts: Aarhus University
Jonathan A. Holmes: University College London
David J. Horne: Queen Mary University of London
Melanie J. Leng: British Geological Survey
Carl D. Sayer: University College London
Rhys G. O. Timms: Royal Holloway, University of London
Katy Flowers: Royal Holloway, University of London
Simon P. M. Blockley: Royal Holloway, University of London
Andrea Kelly: Broads Authority
Natural Hazards: Journal of the International Society for the Prevention and Mitigation of Natural Hazards, 2022, vol. 114, issue 2, No 40, 2059-2085
Abstract:
Abstract Climate change threatens the current protection provided by coastal defences in low-lying mid-latitude regions and increases the risk to coastal lakes from future frequent and intense storms. Quantifying and understanding the impacts of past storm surges, therefore, has significant implications for the management and conservation of coastal wetlands worldwide. However, short-term (
Keywords: Cyprideis torosa; Ostracods; Oxygen isotope; Sr/Ca; Coastal lakes; Storm surge; Salinisation (search for similar items in EconPapers)
Date: 2022
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DOI: 10.1007/s11069-022-05459-9
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