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Bibliographic Details
Main Authors: Sukumaran, Vandana, Vishwakarma, Bramha Dutt
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2508.20046
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author Sukumaran, Vandana
Vishwakarma, Bramha Dutt
author_facet Sukumaran, Vandana
Vishwakarma, Bramha Dutt
contents A novel dynamically varying search radius algorithm is developed that takes advantage of bathymetry information to choose satellite observations that represent coastal sea level variability better. The algorithm is successfully tested at 155 tide gauge stations around the globe and demonstrates broader applicability across different coastal regimes compared to existing validation methods. This is supported by consistently higher median correlation and lower median Normalized Root Mean Square Error (NRMSE). Furthermore, the new algorithm improves the efficacy of the low-resolution product, X-TRACK SLA L2P v2022 (XTRACK), and makes it comparable to the high-resolution (20Hz) coastal products: Along-track sea level anomalies and trends v2.3. Using the algorithm at over 267 stations, XTRACK data shows improved agreement with tide gauges for both linear and non-linear trends. In some regions, such as tidally-dominated estuaries and the Eastern Australian coast, lower correlation and higher RMSE for residual signals are reported, which are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2508_20046
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Accounting for shelf width in selecting altimetry observations for coastal sea level variability improves its agreement with tide gauges
Sukumaran, Vandana
Vishwakarma, Bramha Dutt
Atmospheric and Oceanic Physics
A novel dynamically varying search radius algorithm is developed that takes advantage of bathymetry information to choose satellite observations that represent coastal sea level variability better. The algorithm is successfully tested at 155 tide gauge stations around the globe and demonstrates broader applicability across different coastal regimes compared to existing validation methods. This is supported by consistently higher median correlation and lower median Normalized Root Mean Square Error (NRMSE). Furthermore, the new algorithm improves the efficacy of the low-resolution product, X-TRACK SLA L2P v2022 (XTRACK), and makes it comparable to the high-resolution (20Hz) coastal products: Along-track sea level anomalies and trends v2.3. Using the algorithm at over 267 stations, XTRACK data shows improved agreement with tide gauges for both linear and non-linear trends. In some regions, such as tidally-dominated estuaries and the Eastern Australian coast, lower correlation and higher RMSE for residual signals are reported, which are discussed.
title Accounting for shelf width in selecting altimetry observations for coastal sea level variability improves its agreement with tide gauges
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2508.20046