WARSHIP TECHNOLOGY

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Wind Propulsion 2024

ITTC GUIDELINES AND RECOMMENDATIONS FOR WIND PROPULSION TECHNOLOGY

Wind Propulsion

By S Werner D Trodden A Alterskjær K Kume R Eggers Y Kim Y Gao X Zhang

Edition Issue: Wind Propulsion 2024 Publication Year: 2024 Publication Type: Conference Proceeding

As wind propulsion moves rapidly from niche innovation to mainstream maritime technology, industry-wide standards are becoming essential. New guidelines on performance prediction, sea trials and evaluation methods are helping establish a common framework for designers, operators and regulators. The work supports safer adoption, improved confidence and accelerated deployment of wind-powered shipping solutions worldwide.

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Detail Link: ITTC GUIDELINES AND RECOMMENDATIONS FOR WIND PROPULSION TECHNOLOGY

ENHANCING CONFIDENCE IN MULTI-SAIL PERFORMANCE PREDICTION: A COMPARATIVE STUDY OF AERODYNAMIC INTERACTIONS MODELS WITH WIND TUNNEL DATA

Wind Propulsion

By T Tardif C Gouriou F Stella

Edition Issue: Wind Propulsion 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Understanding aerodynamic interactions between multiple wingsails is becoming increasingly important as wind-assisted propulsion scales across commercial shipping. High-Reynolds wind tunnel testing reveals that simplified prediction methods can significantly underestimate complex sail-to-sail effects. Enhanced aerodynamic models incorporating pressure gradients, viscous flow behaviour and improved vortex representation offer more accurate performance predictions, supporting better vessel integration, optimisation and efficiency of next-generation wind propulsion systems.

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Detail Link: ENHANCING CONFIDENCE IN MULTI-SAIL PERFORMANCE PREDICTION: A COMPARATIVE STUDY OF AERODYNAMIC INTERACTIONS MODELS WITH WIND TUNNEL DATA

HOW TO AVOID USING 50% OF GLOBAL RENEWABLE ELECTRICITY IN SHIPPING?

Wind Propulsion

By V Paakkari J Köhler

Edition Issue: Wind Propulsion 2024 Publication Year: 2024 Publication Type: Conference Proceeding

As shipping transitions toward low-carbon fuels, attention is shifting beyond vessel technology to the scale of the energy system required to support it. This research highlights how producing sufficient alternative maritime fuels could demand up to the equivalent of global renewable electricity generation today, creating potential supply and cost constraints. Against this backdrop, wind propulsion emerges as a strategically important zero-carbon energy source, offering a practical means to reduce fuel demand, ease pressure on renewable energy infrastructure and lower the overall cost of maritime decarbonisation.

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Detail Link: HOW TO AVOID USING 50% OF GLOBAL RENEWABLE ELECTRICITY IN SHIPPING?

OPTIMIZATION OF FLUID-STRUCTURAL INTERACTIONS AND SYSTEM LEVEL POSITIONING FOR WIND-ASSISTED SHIP PROPULSION

Wind Propulsion

By W C P van der Velden M Riera

Edition Issue: Wind Propulsion 2024 Publication Year: 2024 Publication Type: Conference Proceeding

Wind-assisted propulsion is increasingly benefiting from advanced digital engineering tools that accelerate design optimisation and improve performance prediction. By combining aerodynamic optimisation, fluid-structure interaction, high-fidelity CFD and finite element analysis within an integrated digital workflow, engineers can assess sail performance, structural integrity and vessel integration from concept through operation. The approach enables more effective sail placement, enhanced fuel savings and improved safety, helping unlock the full potential of wind-assisted propulsion for sustainable maritime transport.

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Detail Link: OPTIMIZATION OF FLUID-STRUCTURAL INTERACTIONS AND SYSTEM LEVEL POSITIONING FOR WIND-ASSISTED SHIP PROPULSION

DEVELOPMENT OF WIND PROPULSION SYSTEM

Wind Propulsion

By Y Arai A Masutani K Amano T Aono

Edition Issue: Wind Propulsion 2024 Publication Year: 2024 Publication Type: Conference Proceeding

As wind propulsion moves from assistance to a potential primary means of propulsion, new challenges in vessel control are emerging. This research demonstrates how independently controlled rotor sails can actively manage yaw moments and maintain course stability, reducing reliance on traditional rudders. Combining CFD modelling with wind-tunnel and free-running trials, the approach offers a promising pathway for expanding the practical adoption of wind-powered shipping.

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Detail Link: DEVELOPMENT OF WIND PROPULSION SYSTEM

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