Experimental and Numerical Study of Novel Vortex Bladeless Wind Turbine with an Economic Feasibility Analysis and Investigation of Environmental Benefits

dc.contributor.authorAlkhedher, Mohammad
dc.contributor.authorHamdan, Hasan
dc.contributor.authorAl Tahhan, Aghyad
dc.contributor.authorGomaa, Abdelrahman
dc.contributor.authorSham Dol , Sharul
dc.contributor.authorAjaj, Rahaf
dc.contributor.authorAl Ramahi, Ahmad
dc.contributor.authorTurkmani, Haya
dc.date.accessioned2024-09-12T06:44:35Z
dc.date.available2024-09-12T06:44:35Z
dc.date.issued2024
dc.descriptionIn recent years, renewable energy (RE) has become widely discussed among experts and the general public [ 1]. The growing world population is causing an increase in energy demand, which puts additional pressure on traditional energy sources to meet the rising consumption needs [2]. Since the early 1970s, fossil fuel depletion and climate change consequences have been related to climate change [1]
dc.description.abstractThis study combines experimental and numerical evaluations of Vortex Bladeless Wind Turbines (VBWTs) to understand their potential in renewable energy generation. The methodology employs Two-Way Fluid–Solid Interface (FSI) simulations, alongside real-world data, providing important insights into the turbine’s vibration dynamics and flow interactions during operation. Key findings include identifying optimal vibration frequencies and amplitudes that enhance energy harvesting and a clear advantage in power-generation estimations shown by one of the models used. The study reveals possible applications of VBWT in various settings like airport runways, highways, and buildings, indicating a promising avenue for incorporating such renewable-energy solutions. Discussions on the economic feasibility and environmental benefits of VBWT deployment are also presented, suggesting a need for further research and optimization in this area. A conceptual generator design and business model are introduced as part of a broader discussion on technology integration and energy storage. The research in this study encompasses experimental and numerical analysis, to achieve a broader understanding of the workings of a VBWT, realizing the feasibility of using such systems in lower-wind-speed conditions and upscaling to higher-wind-speed cases. Keywords: aerodynamics; CFD; vortex bladeless; vortex generator; wind energy
dc.identifier.citationHamdan, H., Dol, S. S., Gomaa, A. H., Tahhan, A. B. A., Al Ramahi, A., Turkmani, H. F., ... & Ajaj, R. (2023). Experimental and Numerical Study of Novel Vortex Bladeless Wind Turbine with an Economic Feasibility Analysis and Investigation of Environmental Benefits. Energies, 17(1), 214.
dc.identifier.doihttps://doi.org/10.3390/en17010214
dc.identifier.urihttps://repository.adu.ac.ae/handle/1/6407
dc.language.isoen
dc.publisherMultidisciplinary Digital Publishing Institute (MDPI)
dc.titleExperimental and Numerical Study of Novel Vortex Bladeless Wind Turbine with an Economic Feasibility Analysis and Investigation of Environmental Benefits
dc.typeArticle

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