3D POSITIONING DEVICE FOR SIMULATING THE OPERATION OF WIND SYSTEM

Daniel BESNEA, Alina SPÂNU, Edgar MORARU, Elena DINU, Victor-Florin CONSTANTIN

Abstract


In the paper, the authors present an experimental stand for simulating the operation of two types of wind turbines (with vertical axis - VAWT and horizontal axis - HAWT). The experimental stand allows the generation of the numerically controlled current flow on 3 axes so that the experimental model is as close as possible to the real model. The six experimental models of wind turbines proposed for the study were made using Rapid Prototyping technologies. The paper aims to determine the most efficient profile of wind turbines, for the same current flow, given the efforts of specialists to find new approaches to obtaining renewable energy.


Full Text:

PDF

References


Maican, E. Renewable energy systems (In Romanian), Printech Publisher, Bucharest, 2015.

Gogu, M. Wind Power - lecture notes (In Romanian). Available at https://www.mircea-gogu.ro/html/conversia_ neconventionala_cuprins.html

Berce, P., Balc, N., Calzar, C., Pacurar, R., Radu, A.S., Bratean, S., Fodorean, I. Manufacturing technologies by adding material and their applications (In Romanian), Romanian Academy Publisher, Bucharest, 2014.

Dobrescu, E.M. Renewable energies. Economic, social and ecological efficiency (In Romanian). Sigma Educational Publisher, ISBN:9789736495014, Romania, 2009.

Badea, A., Necula, H. Renewable energy sources (In Romanian) , A.G.I.R. Publisher, ISBN: 978-973-720-469- 1, Romania, 2013.

Joselin Herbert, G.M., Iniyan, S., Sreevalsan, E., Rajapandian, S. A review of wind energy technologies, Renewable and Sustainable Energy Reviews, 11 (6), 1117-1145, 2007,

https://doi.org/10.1016/j.rser.2005.08.004

Blaadbjerg, F., Ionel, D.M. Renewable Energy Devices and Systems – State-of-the-Art Technology, Research and Development, Challenges and Future Trends, Electric Power Components and Systems, 43(12), 1319-1328, 2015.

Olabi, A.G., State of the art on renewable and sustainable energy, Energy, 61, 2-5, 2013.

1Energy, Construction and operation of wind turbines (In Romanian). Available at: https://www.1energy.ro/constructia-si-functionarea-turbinelor-eoliene

Kalogirou, S.A. Solar Energy Engineering-Processes and Systems. Chapter 13: Wind Energy Systems, Academic Press, Boston, pp.735-762, eBook ISBN: 9780123972569, 2014.

Kang, L. Energy self-sufficient eco-village: utilization of wind energy, Thesis, MAMK University of Applied Sciences, 2014.

Al Absi, S.M., Salleh, H.B., Maseer, M.M., Abbas, M.A., Al-quraishi, B.A., Hamza, S.S. Experimental Study of the Performance of theElliptical Savonius Turbine and New Design forBlade Shape Using A 3D Printing Technology, Int J of Mechanical & Mechatronics Eng 19 (04) 2019.

Samara, F., Johnson, D.A. In-blade Load Sensing on 3D Printed Wind Turbine Blades Using Trailing Edge Flaps, J. Phys.: Conf. Ser. 1037 052023, 2018.

Davis, M.S., Madani, M.R. 3D-Printing Functional Small-Scale Wind Turbine, 6th International Renewable and Sustainable Energy Conference (IRSEC),. 1-6, 2018, doi: 10.1109/IRSEC.2018.8702850.

Altan, B.D., Altan, G., Kovan, V. Investigation of 3D printed Savonius rotor performance, Renewable Energy, 99, 584 – 591, 2016.

Lucian, V.E. Wind turbines. Manual of documentation, design, dimensioning and installation of wind turbines (In Romanian), Editura Universitara, ISBN: 978-606-28-0181-6, Bucharest, 2015.


Refbacks

  • There are currently no refbacks.


JOURNAL INDEXED IN :