Sea-level rise will likely accelerate rock coast cliff retreat rates

Author:

Shadrick Jennifer R.ORCID,Rood Dylan H.ORCID,Hurst Martin D.ORCID,Piggott Matthew D.,Hebditch Bethany G.,Seal Alexander J.,Wilcken Klaus M.ORCID

Abstract

AbstractCoastal response to anthropogenic climate change is of central importance to the infrastructure and inhabitants in these areas. Despite being globally ubiquitous, the stability of rock coasts has been largely neglected, and the expected acceleration of cliff erosion following sea-level rise has not been tested with empirical data, until now. We have optimised a coastal evolution model to topographic and cosmogenic radionuclide data to quantify cliff retreat rates for the past 8000 years and forecast rates for the next century. Here we show that rates of cliff retreat will increase by up to an order of magnitude by 2100 according to current predictions of sea-level rise: an increase much greater than previously predicted. This study challenges conventional coastal management practices by revealing that even historically stable rock coasts are highly sensitive to sea-level rise and should be included in future planning for global climate change response.

Funder

RCUK | Natural Environment Research Council

British Geological Survey

Australian Nuclear Science and Technology Organisation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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