Affiliation:
1. Department of the Built Environment, Aalborg University 3 , Thomas Mann Vej 23, Aalborg DK-9220, Denmark
Abstract
Savonius hydrokinetic turbines (SHTs), categorized as emerging cyclic-type wave energy converters (WECs), have demonstrated notable potential in achieving elevated energy conversion efficiency and consistent power output. This performance is particularly observed when operating under the initial phase-locked strategy (IPLS), marking a significant advancement in the realm of wave energy harvesting. However, a thorough exploration of the influences stemming from wave conditions and turbine design remains an area that warrants further investigation for advancing the performance of SHT-WECs under the proper operational strategy. This study undertakes an exhaustive analysis of geometric parameters, encompassing turbine diameter, blade number, and thickness. An experiment-validated numerical model based on the unsteady two-phase Reynolds-averaged Navier–Stokes equations is adopted in the research. Comprehensive investigations include analyses of flow fields around the turbine, pressure distributions on blade surfaces, and dynamic torque variations. These analyses serve to elucidate the variation rules of hydrodynamic characteristics and their influential mechanisms. The results highlight the notable impact of the proposed “relative-short wavelength impact” on the performance of SHT-WECs operating under IPLS conditions. Notably, no significant impact is observed when the relative wavelength exceeds 17. Optimal performance is achieved with the thinnest and two-bladed turbine configuration. Moreover, optimizing the turbine diameter significantly enhances SHT-WEC conversion efficiency, with the attained maximum value reaching approximately 18.6%. This study offers a concise guideline for designing turbine diameters in alignment with specific wave conditions.
Funder
Science and Technology Innovation 2025 Major Project of Ningbo
Key Research and Development Program of Ningbo
The Public Welfare Foundation of Ningbo
Subject
Condensed Matter Physics,Fluid Flow and Transfer Processes,Mechanics of Materials,Computational Mechanics,Mechanical Engineering
Reference40 articles.
1. World energy outlook 2022;IEA,2022
2. International renewable energy agency;IRENA,2020
3. An assessment of global ocean wave energy resources over the last 45 a;Acta Oceanol. Sin.,2014
4. Wave energy in China: Current status and perspectives;Renewable Energy,2009
5. Wave energy in Europe: Current status and perspectives;Renewable Sustainable Energy Rev.,2002
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