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Paper in Journal of Marine Science and Engineering.

HTML link on publisher's website (Open Access):

https://www.mdpi.com/2077-1312/8/12/1039

Title:

Reliability of Extreme Significant Wave Height Estimation from Satellite Altimetry and In Situ Measurements in the Coastal Zone

Authors:

Ben Timmermans, Andrew Shaw & Christine Gommenginger.

Abstract:

Measurements of significant wave height from satellite altimeter missions are finding increasing application in investigations of wave climate, sea state variability and trends, in particular as the means to mitigate the general sparsity of \emph{in situ} measurements. However, many questions remain over the suitability of altimeter data for the representation of extreme sea states and applications in the coastal zone. In this paper, the limitations of altimeter data to estimate coastal Hs extremes (< 10 km from shore) are investigated using the European Space Agency Sea State Climate Change Initiative L2P altimeter data v1.1 product recently released. This Sea State CCI product provides near complete global coverage and a continuous record of 28 years. It is used here together with \emph{in situ} data from moored wave buoys at six sites around the coast of the United States. The limitations of estimating extreme values based on satellite data are quantified and linked to several factors including the impact of data corruption nearshore, the influence of coastline morphology and local wave climate dynamics, and the spatio-temporal sampling achieved by altimeters. The factors combine to lead to considerable underestimation of estimated Hs 10-yr return levels. Sensitivity to these factors is evaluated at specific sites, leading to recommendations about the use of satellite data to estimate extremes and their temporal evolution in coastal environments.

Main paper files hosted on Overleaf.com.

R script files used to generate figures.

ggplot_buoy_map.R paired_analysis_MDPI.R plot_L2_buoy_series_MDPI.R

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Code associated with https://doi.org/10.3390/jmse8121039

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