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June 17, 2026Renewable Energy0 citationsOpen Access

Techno-economic assessment of a U-shaped sloshing tank wave energy converter for Italian offshore applications

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SSSergej Antonello SiriguVBValerio Francesco BarnabeiFGFilippo Giorcelli

Key Points

  • This assessment aims to evaluate the economic viability and energy production potential of the U-shaped sloshing tank wave energy converter in Mediterranean offshore environments.
  • Two-stage optimisation framework applied to U-shaped wave energy converter parameters.
  • Bi-objective techno-economic optimisation for displacement mass and annual energy production.
  • Ad hoc optimisation of Wells turbine based on the coupling with hull size and resonance behaviour.
  • Optimal configurations favor asymmetric hull designs for enhanced performance.
  • Multi-site analysis indicates U-WEC suitability for various Italian offshore locations.
  • Results confirm significant hydrodynamic coupling and resonance effects on energy conversion efficiency.

Abstract

Wave energy converters (WECs) offer promising opportunities for supplying power to isolated grids and for synergistic co-location with offshore wind farms, particularly in moderate wave climates such as the Mediterranean Sea. This work presents a techno-economic assessment of a floating U-shaped sloshing tank Wave Energy Converter (U-WEC), which exploits the coupled motion of a floating hull and an internal U-tank to drive a Wells turbine-based power take-off. A two-stage optimisation framework is proposed. First, a bi-objective techno-economic optimisation is performed on the main system parameters governing displacement mass, used as a proxy for capital cost, and gross annual energy production. Second, an ad hoc optimisation of the Wells turbine is carried out for each optimal device, accounting for the strong coupling between hull size, resonance behaviour, and turbine operating conditions. The methodology is applied to a Mediterranean site in the Strait of Sicily and compared with a Northern European site to assess the impact of different wave climates. The results show that optimal solutions consistently converge towards asymmetric hull configurations, highlighting the importance of multi-degree-of-freedom hydrodynamic coupling and resonance tuning between the hull and the U-tank. A multi-site assessment across several Italian offshore locations, including offshore wind co-location areas and off-grid islands, confirms the suitability of the proposed U-WEC for Mediterranean offshore applications.

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Cite This Study

Sirigu et al. (2026) studied this question.

synapsesocial.com/papers/6a3238acd50b63ecad204749https://doi.org/10.1016/j.renene.2026.126067
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