Flo: A data-driven limited-area storm surge model

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Hauptverfasser: Kristensen, Nils Melsom, Matuszak, Mateusz, Tedesco, Paulina, Kullmann, Ina Kristine Berentsen, Röhrs, Johannes
Format: Preprint
Veröffentlicht: 2026
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author Kristensen, Nils Melsom
Matuszak, Mateusz
Tedesco, Paulina
Kullmann, Ina Kristine Berentsen
Röhrs, Johannes
author_facet Kristensen, Nils Melsom
Matuszak, Mateusz
Tedesco, Paulina
Kullmann, Ina Kristine Berentsen
Röhrs, Johannes
contents We present Flo, a data-driven storm surge model, covering the North Sea, Norwegian Sea and Barents Sea. The model is built using the Anemoi framework for creating machine learning weather forecasting systems, developed by the European Centre for Medium-Range Weather Forecasts and partners. The model is based on a graph neural network, and is capable of simulating water level due to atmospheric effects (wind stress and inverse barometer effect, i.e. the non-tidally induced part of the total water level; the residual water level) at a horizontal resolution of 4 km and a temporal resolution of 1 hour with a quality comparable to the numerical model on which it was trained. The model was trained using a dataset consisting of 43 years of atmospheric data from the 3-km Norwegian Reanalysis hindcast for mean sea level pressure and winds, and the NORA-Surge hindcast for water level. Evaluation was done by comparing results from hindcast runs of the Flo model against independent observations of more than 90 water level gauges along the European coast, and against the NORA-Surge hindcast. The evaluation shows that Flo produces hindcasts with accuracy similar to the NORA-Surge hindcast, and it is shown that the model can resolve key physical processes. As the NORA-Surge hindcast used for training does not include data assimilation, Flo is not expected to systematically outperform the numerical model when evaluated against observations. Nevertheless, the present work represents an important step towards complementing traditional physics-based storm surge modelling with machine learning approaches and the framework establishes a strong foundation for future developments, particularly for training storm surge models that offer more flexibility for incorporating observations and other additional data sources.
format Preprint
id arxiv_https___arxiv_org_abs_2601_02090
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Flo: A data-driven limited-area storm surge model
Kristensen, Nils Melsom
Matuszak, Mateusz
Tedesco, Paulina
Kullmann, Ina Kristine Berentsen
Röhrs, Johannes
Atmospheric and Oceanic Physics
We present Flo, a data-driven storm surge model, covering the North Sea, Norwegian Sea and Barents Sea. The model is built using the Anemoi framework for creating machine learning weather forecasting systems, developed by the European Centre for Medium-Range Weather Forecasts and partners. The model is based on a graph neural network, and is capable of simulating water level due to atmospheric effects (wind stress and inverse barometer effect, i.e. the non-tidally induced part of the total water level; the residual water level) at a horizontal resolution of 4 km and a temporal resolution of 1 hour with a quality comparable to the numerical model on which it was trained. The model was trained using a dataset consisting of 43 years of atmospheric data from the 3-km Norwegian Reanalysis hindcast for mean sea level pressure and winds, and the NORA-Surge hindcast for water level. Evaluation was done by comparing results from hindcast runs of the Flo model against independent observations of more than 90 water level gauges along the European coast, and against the NORA-Surge hindcast. The evaluation shows that Flo produces hindcasts with accuracy similar to the NORA-Surge hindcast, and it is shown that the model can resolve key physical processes. As the NORA-Surge hindcast used for training does not include data assimilation, Flo is not expected to systematically outperform the numerical model when evaluated against observations. Nevertheless, the present work represents an important step towards complementing traditional physics-based storm surge modelling with machine learning approaches and the framework establishes a strong foundation for future developments, particularly for training storm surge models that offer more flexibility for incorporating observations and other additional data sources.
title Flo: A data-driven limited-area storm surge model
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2601.02090