Electricity Production from Wind Energy By Piezoelectric Material

In recent years, the energy demand has increased, and alternative way of energy production methods are proposed to deal with this phenomenon by scholars. One of the most promising method is piezoelectric materials. These materials can be used for energy production with improving their efficiencies....

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Main Authors: İkram Büyükkeskin, Sezai Alper Tekin, Seyfettin Gürel, Mustafa Serdar Genç
Format: Article
Language:English
Published: Diponegoro University 2019-02-01
Series:International Journal of Renewable Energy Development
Subjects:
Online Access:https://ijred.cbiore.id/index.php/ijred/article/view/21773
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author İkram Büyükkeskin
Sezai Alper Tekin
Seyfettin Gürel
Mustafa Serdar Genç
author_facet İkram Büyükkeskin
Sezai Alper Tekin
Seyfettin Gürel
Mustafa Serdar Genç
author_sort İkram Büyükkeskin
collection DOAJ
description In recent years, the energy demand has increased, and alternative way of energy production methods are proposed to deal with this phenomenon by scholars. One of the most promising method is piezoelectric materials. These materials can be used for energy production with improving their efficiencies. This work is made with the guidance of one project which aimed to electricity production form wind energy. This method with one prototype is investigated. Two different wind stalk structures are produced with 3-D Printer. These different structures are set up in wind tunnel and it is experimented under different wind speeds and high turbulence flows. As a result, a circular and four-corner wind stalk structures are investigated for low and high turbulence flows in several wind speeds.  To conclude, the produced energy is too small for the systems in market because there are many types of piezoelectric materials for various applications and the problems due to measurement devices. However, piezoelectric materials can be better alternative for classical wind turbines in turbulence flow areas. Therefore, the electricity production from piezoelectric material will be promising method in the future with its advantages. © 2019. CBIORE-IJRED. All rights reserved Article History: Received May 15th 2018; Received in revised form September 14th 2018; Accepted January 5th 2019; Available online How to Cite This Article: Buyukkseskin, I., Tekin, S. A., Gurel, S., Genc, M S. (2019) Electricity Production from Wind Energy By Piezoelectric Material. International Journal of Renewable Energy Develeopment, 8(1), 41-46. https://doi.org/10.14710/ijred.8.1.41-46
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spelling doaj.art-01d2e8660e88410a9e73bc6f135a0a032023-11-28T02:08:34ZengDiponegoro UniversityInternational Journal of Renewable Energy Development2252-49402019-02-0181414610.14710/ijred.8.1.41-4614412Electricity Production from Wind Energy By Piezoelectric Materialİkram Büyükkeskin0Sezai Alper Tekin1Seyfettin Gürel2Mustafa Serdar Genç3Erciyes University, Department of Energy Systems Engineering, Kayseri, TurkeyErciyes University, Department of Industrial Design Engineering, Kayseri, TurkeyErciyes University, Department of Energy Systems Engineering, Kayseri, TurkeyErciyes University, Department of Energy Systems Engineering, Kayseri, TurkeyIn recent years, the energy demand has increased, and alternative way of energy production methods are proposed to deal with this phenomenon by scholars. One of the most promising method is piezoelectric materials. These materials can be used for energy production with improving their efficiencies. This work is made with the guidance of one project which aimed to electricity production form wind energy. This method with one prototype is investigated. Two different wind stalk structures are produced with 3-D Printer. These different structures are set up in wind tunnel and it is experimented under different wind speeds and high turbulence flows. As a result, a circular and four-corner wind stalk structures are investigated for low and high turbulence flows in several wind speeds.  To conclude, the produced energy is too small for the systems in market because there are many types of piezoelectric materials for various applications and the problems due to measurement devices. However, piezoelectric materials can be better alternative for classical wind turbines in turbulence flow areas. Therefore, the electricity production from piezoelectric material will be promising method in the future with its advantages. © 2019. CBIORE-IJRED. All rights reserved Article History: Received May 15th 2018; Received in revised form September 14th 2018; Accepted January 5th 2019; Available online How to Cite This Article: Buyukkseskin, I., Tekin, S. A., Gurel, S., Genc, M S. (2019) Electricity Production from Wind Energy By Piezoelectric Material. International Journal of Renewable Energy Develeopment, 8(1), 41-46. https://doi.org/10.14710/ijred.8.1.41-46https://ijred.cbiore.id/index.php/ijred/article/view/21773electricity productionpiezoelectric materialwind energywind stalk3d printer
spellingShingle İkram Büyükkeskin
Sezai Alper Tekin
Seyfettin Gürel
Mustafa Serdar Genç
Electricity Production from Wind Energy By Piezoelectric Material
International Journal of Renewable Energy Development
electricity production
piezoelectric material
wind energy
wind stalk
3d printer
title Electricity Production from Wind Energy By Piezoelectric Material
title_full Electricity Production from Wind Energy By Piezoelectric Material
title_fullStr Electricity Production from Wind Energy By Piezoelectric Material
title_full_unstemmed Electricity Production from Wind Energy By Piezoelectric Material
title_short Electricity Production from Wind Energy By Piezoelectric Material
title_sort electricity production from wind energy by piezoelectric material
topic electricity production
piezoelectric material
wind energy
wind stalk
3d printer
url https://ijred.cbiore.id/index.php/ijred/article/view/21773
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AT sezaialpertekin electricityproductionfromwindenergybypiezoelectricmaterial
AT seyfettingurel electricityproductionfromwindenergybypiezoelectricmaterial
AT mustafaserdargenc electricityproductionfromwindenergybypiezoelectricmaterial