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Information Journal Paper

Title

FIV Energy Harvesting from Sharp Edge Square and Diamond Oscillators

Pages

  1-8

Abstract

 The horizontal kinetic energy of the fluid flow, from on-land wind to ocean tidal stream, is one of the most promising sources of the energy. In the field of renewable energies, power extraction from Flow Induced Vibration (FIV) of bluff bodies is a fast growing research area which has seen a great advancement over the last decade. In this study, the FIV energy harvesting potential of a sharp edge square cylinder in two different flow incidences is investigated. The square cylinder, depending on its orientation with respect to the incident flow, demonstrates VIV or Galloping types of responses. The results indicate that the square cylinder with a flat side perpendicular to the flow has a Galloping type of response. In contrast, the same cylinder with a sharp vertex pointing the flow (diamond configuration) shows a VIV type of response. The Hydroelastic efficiency of the resonating square cylinder is significantly higher than that with the Galloping type of response. This shows the great advantages of diamond VIV excavators over square Galloping harvesters.

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  • Cite

    APA: Copy

    TAMIMI, VAHID, Seif, Mohammad Said, Shahvaghar Asl, Selda, Omid Naeeni, Seyed Taghi, & Zeinoddini, Mostafa. (2019). FIV Energy Harvesting from Sharp Edge Square and Diamond Oscillators. INTERNATIONAL JOURNAL OF MARITIME TECHNOLOGY, 12(-), 1-8. SID. https://sid.ir/paper/771452/en

    Vancouver: Copy

    TAMIMI VAHID, Seif Mohammad Said, Shahvaghar Asl Selda, Omid Naeeni Seyed Taghi, Zeinoddini Mostafa. FIV Energy Harvesting from Sharp Edge Square and Diamond Oscillators. INTERNATIONAL JOURNAL OF MARITIME TECHNOLOGY[Internet]. 2019;12(-):1-8. Available from: https://sid.ir/paper/771452/en

    IEEE: Copy

    VAHID TAMIMI, Mohammad Said Seif, Selda Shahvaghar Asl, Seyed Taghi Omid Naeeni, and Mostafa Zeinoddini, “FIV Energy Harvesting from Sharp Edge Square and Diamond Oscillators,” INTERNATIONAL JOURNAL OF MARITIME TECHNOLOGY, vol. 12, no. -, pp. 1–8, 2019, [Online]. Available: https://sid.ir/paper/771452/en

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