Scale-model experiments for the surface wave influence on a submerged floating ocean-current turbine

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Abstract

In order to harness the kinetic energy of marine currents, we propose a novel ocean-current turbine with a horizontal axis. The turbine can be moored to the seabed and function similarly to kites in a water flow. To operate such turbines in a marine current, the resulting rotor torque needs to be canceled. Therefore, the proposed turbine is designed with a float at its top and a counterweight at its bottom. Thus far, we have verified the turbine stability and blade performance through towing experiments. As the next step, we constructed a scale-model turbine to confirm the mooring system. This experiment was performed at a circulating water channel with wave-making facilities. The influence of waves on the floating body was also investigated. In this paper, we report the behavior of the scale-model turbine moored to the tank bottom and discuss the influence of surface waves.

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Shirasawa, K., Minami, J., & Shintake, T. (2017). Scale-model experiments for the surface wave influence on a submerged floating ocean-current turbine. Energies, 10(5). https://doi.org/10.3390/en10050702

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