LE QUY DON
Technical University
VietnameseClear Cookie - decide language by browser settings

Performance enhancement of savonius wind turbine by multicurve blade shape

Banh Duc, M. and Tran the, H. and Dinh Duc, N. and Chu Duc, T. and Dinh Le, A. (2023) Performance enhancement of savonius wind turbine by multicurve blade shape. Energy Sources, Part A: Recovery, Utilization and Environmental Effects, 45 (1). pp. 1624-1642.

Full text not available from this repository. (Upload)

Abstract

This study proposes a novel blade configuration, made with a multicurve profile, to further maximize the advanced benefits and the performance of a Savonius turbine for energy harvesting applications. The advantages of the presently designed blade are proved by a detailed analysis of the flow mechanism and the performance through a sequence of two-dimensional (2D) unsteady computational fluid dynamics simulation. The remarkable finding states that the main blade section with a length ratio of 0.9 combined with an elliptical auxiliary section effectively enhances the positive wind flow phenomena around the blade, especially for the returning position, which either smooths the flow or reduces the pressure on the blade’s convex side. As a result, greater torque is obtained by the present configuration, responding to the improvement of the power generation to 0.24–about 5.5 at the low TSR = 0.8 and up to 0.28 - about 185 at the high TSR = 1.5 over the conventional configurations. The effectiveness of the presently designed blade is further proved with more than 20 improvement in self-staring speed through six degrees of freedom analysis. The results above state a high potential application of the turbine with the presently designed blade for renewable energy applications and for supporting vulnerable communities without access to electricity. © 2023 Taylor & Francis Group, LLC.

Item Type: Article
Divisions: Faculties > Faculty of Aerospace Engineering
Identification Number: 10.1080/15567036.2023.2180114
Uncontrolled Keywords: Computational fluid dynamics; Degrees of freedom (mechanics); Turbine components; Turbomachine blades; Wind turbines, 6DOF; Blade configurations; Multi curves; Performance; Performance enhancements; Power coefficients; Savonius turbine; Savonius wind turbine; Tip speed ratio; Urban areas, Energy harvesting
URI: http://eprints.lqdtu.edu.vn/id/eprint/10767

Actions (login required)

View Item
View Item