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Original scientific paper

https://doi.org/10.65776/ep.20.4.4

Propagation of weather forecast uncertainties through attainable ship speed prediction models

Marijana Marjanović ; University of Rijeka, Faculty of engineering, Vukovarska 58, Rijeka, 51000, Croatia
Jasna Prpić-Oršić ; University of Rijeka, Faculty of Engineering, Vukovarska 58, Rijeka, 51000, Croatia
Marko Valčić ; University of Rijeka, Faculty of Engineering, Vukovarska 58, Rijeka, 51000, Croatia; University of Zadar, Maritime Department, Ruđera Boškovića 5, Zadar, 23000, Croatia


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Abstract

Accurate prediction of weather-induced ship speed loss requires understanding how meteorological forecast uncertainties propagate through vessel performance models. This study presents a comparative assessment of three computational approaches for attainable speed estimation: the Wärtsilä NTPRO 5000 navigation simulator with JONSWAP and Pierson-Moskowitz spectral implementations, and HydroComp NavCad hydrodynamic software. Over 2,000 simulations were conducted for a 28,050 DWT bulk carrier across varying wave heights (0-12 m), encounter angles (0°-180°), and operational speeds (12.0-14.5 knots). Correlation analysis between meteorological predictor variables and ship speed response uncertainties revealed that significant wave height errors exhibit the strongest coupling with speed prediction errors (r = 0.65-0.97), while encounter angle geometry substantially modulates uncertainty propagation patterns. The Pierson-Moskowitz implementation demonstrated the most balanced error characteristics, whereas JONSWAP produced more polarised correlations at extended forecast horizons. Results indicate that uncertainty quantification approaches must account for both model-specific sensitivities and spatially varying forecast skill degradation.

Keywords

Weather forecast degradation; Attainable speed modelling; Uncertainty quantification; Correlation analysis

Hrčak ID:

348287

URI

https://hrcak.srce.hr/348287

Publication date:

26.6.2026.

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