Effect of a V-Shaped Groove on the Performance of a Circular-Cylinder Energy Harvester
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Published:2023-02-17
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ISSN:0964-1726
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Container-title:Smart Materials and Structures
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language:
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Short-container-title:Smart Mater. Struct.
Author:
Siritham ThannitORCID,
Kittichaikarn Chawalit
Abstract
Abstract
The effect of a V-shaped groove on the performance of a circular-cylinder energy harvester was investigated in this study. The experiments were conducted in a closed-loop wind tunnel at a wind speed ranging from 1 to 7 m/s. A standard circular-cylinder bluff body was modified to have the V-shaped groove at the front. The angle θ of the half V-shaped groove was adjusted from 15° to 45°. The experimental results demonstrate that the groove angle between 2θ = 45° and 68° can sustain energy harvesting when the wind speed increases continuously and provide higher performance on the power output than that in other cases. However, at a wind speed of 7 m/s in the V-shaped groove of 2θ = 68°, it can provide a maximum root-mean-square power output of 20.33 mW, which is about 140 times that of a standard circular cylinder. Furthermore, particle image velocimetry was used to visualize the flow field around the V-shaped groove bluff body. It showed that the groove angle and wind speed had a direct effect on the bluff body’s degree of vibration. The results can be used to improve the energy harvester’s efficiency.
Funder
Faculty of Engineering, Kasetsart University
Subject
Electrical and Electronic Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,Atomic and Molecular Physics, and Optics,Civil and Structural Engineering,Signal Processing
Cited by
2 articles.
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