4.7 Article

Tow testing of Savonius wind turbine above a bluff body complemented by CFD simulation

Journal

RENEWABLE ENERGY
Volume 87, Issue -, Pages 332-345

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.renene.2015.10.015

Keywords

Savonius; Wind turbine; Tow testing; Bluff body; Building integrated renewable energy; Computational fluid dynamics

Funding

  1. Maritime and Port Authority of Singapore

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A simple way to improve its power coefficient (c(p)) of a Savonius turbine is by its installation above a cuboidal building as the building will redirect the wind and increase its speed significantly. To determine the gain, a turbine was constructed and installed above a bluff body and tow tested. Detailed measurements of vehicle speed and turbine power were made. Tow test speeds were 8,10 and 12 m/s, while TSR range was 0.6-1.1. Most importantly, wind speed at the position beside and slightly above the turbine was measured during test runs. The c(p) calculated using this measured wind speed was used to validate CFD simulation results. Simulation results were also used to obtain the relationships between the wind speed of the free stream and at the anemometer position. Typically, wind speed at the anemometer position is about 9% higher than those of the free stream. These relationships were used to derive the free stream wind speed of each experimental run. The c(p) calculated using these derived free stream wind speeds showed an increase of 25% at 12 m/s wind speed, compared to the c(p) reported by previous researchers for a similar turbine operating in unmodified air flow. (C) 2015 Elsevier Ltd. All rights reserved.

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