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Nine months of daily LiDAR, orthophotos and MetOcean data from the eroding soft cliff coast at Happisburgh, UK.
Pennington, Catherine; Shaw, Matthew; Brooks, Thomas; Briganti, Riccardo; Gómez-Pazo, Alejandro; Ruffini, Gioele; Appleton, Matthew; Payo, Andres.
Afiliação
  • Pennington C; British Geological Survey, Multi Hazards and Resilience, Keyworth, NG12 5GG, UK. cpoulton@bgs.ac.uk.
  • Shaw M; ScanLAB Projects, Unit 7, 5 Durham Yard, London, E2 6QF, UK. Matt@scanlabprojects.co.uk.
  • Brooks T; ScanLAB Projects, Unit 7, 5 Durham Yard, London, E2 6QF, UK.
  • Briganti R; University of Nottingham, Faculty of Engineering, Nottingham, NG7 2RD, UK. Riccardo.Briganti@nottingham.ac.uk.
  • Gómez-Pazo A; University of Santiago de Compostela, Department of Geography, Santiago de Compostela, 15701, Spain.
  • Ruffini G; Sapienza University of Rome, Department of Civil, Building and Environmental Engineering, Rome, 00184, Italy.
  • Appleton M; University of Nottingham, Faculty of Engineering, Nottingham, NG7 2RD, UK.
  • Payo A; British Geological Survey, Multi Hazards and Resilience, Keyworth, NG12 5GG, UK.
Sci Data ; 11(1): 846, 2024 Aug 05.
Article em En | MEDLINE | ID: mdl-39103380
ABSTRACT
The dynamic interaction between cliff, beach and shore-platform is key to assessing the sediment balance for coastal erosion risk assessments, but this is poorly understood. We present a dataset containing daily, 3D,colour LiDAR scans of a 450 m coastal section at Happisburgh, Norfolk, UK. This previously para-glaciated region comprises mixed sand-gravel sediments, which are less well-understood and well-studied than sandy beaches. From Apr-Dec 2019, 236 daily surveys were carried out. The dataset presented includes survey areas, transects LiDAR scans, georeferenced orthophotos, meteorological- and oceanographical conditions during the Apr-Dec observation period. Full LiDAR point-clouds are available for 67 scans (Oct-Dec). Hourly time-series of offshore sea-state parameters (significant wave height, mean propagation direction, selected spectral periods) were obtained by downscaling the ERA5 global reanalysis data (global atmosphere, land surface and ocean waves) using the numerical model Simulating Waves Nearshore (SWAN). We indicate how to obtain hourly precipitation time-series by interpolating ERA5 data. This dataset is important for researchers understanding the interaction between cliff, beach and shore-platform in open-coast mixed-sand-gravel environments.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article