Some design features of the carousel type wind turbine bidarrieus

Some design features of the carousel type wind turbine bidarrieus

Authors

DOI:

https://doi.org/10.31489/2019No2/63-67

Keywords:

wind turbine, NACA airfoil, Darrieus, Bidarrieus, HBI-rotor, surface boundary layer

Abstract

The article presents the results of studies to improve the vertical-axis Darrieus type wind turbine with two coaxially located rotating shafts. Some design features of the symmetrical NACA-0021 airfoil are discussed. Both moving blades streamlined area scheme is shown. The brief description of the laboratory models of the carousel type wind turbine with HBI-rotor is given. It is shown that placement of a vertical-axis wind turbine at a certain height, above the surface boundary layer, can provide opportunities to further improve its effectiveness.

References

"1 World Renewables 2019. Global Status Report. https://www.ren21.net/reports/global-statusreport/

World Renewables 2018 Global Status Report (GSR). World Wind Energy Association, June 4, 2018. Available at: http://wwindea.org/11961-2/

Karatayev M., Hall S., Kalyuzhnova Y., Clarke M. Renewable Energy Technology Uptake in Kazakhstan: Policy Drivers and Barriers in a Transitional Economy. Renewable and Sustainable Energy Reviews. 2016, Vol. 66, pp. 120 – 136.

Mukhamediyev I.R., Mustakayev R., et al. Multi-criteria spatial decision making system for renewable energy development support in Kazakhstan. IEEE Access. 2019, Vol. 7, pp. 122275-122288.

Yershina А.K., Nursadykova Zh.K., Borybaeva M.A. Analysis of development wind power apparatus in Kazakhstan. Eurasian phys. tech. j. 2016, Vol. 13, Issue 2(26), pp. 99 – 106.

Yershina А.K., Manatbayev R.K., Sakipova S.E., Kalasov N.B. Improving the efficiency of wind turbine. Proceeding of the 2nd Intern. Scient. Conf. “Alternative Energy Sources, Materials & Technologies (AESMT’19), Sofia, Bulfaria. 2019, Vol. 1, pp. 89 – 90.

Yershin Sh., Yershina A.K. About High efficiency of two-rotor wind power unit Bidarrieus-2. Eurasian phys. tech. j. 2019, Vol. 16, Issue 1(31), pp. 82 – 87.

Kayan V.P., Kochin V.A., Lebid O.G. Studying the Performance of Vertical Axis Wind Turbine (VAWT) Models with Blade Control Mechanism. Intern. Journal of Fluid Mechanics Research, 2009, Vol.36, Issue 2, pp. 154 – 165.

Bezrukikh P.P. Ispol’zovanie energii vetra.( Wind power use). Moscow, 2008, 196 p. [in Russian]

Hashem I., Mohamed M.H. Aerodynamic performance enhancements of H-rotor Darrieus wind turbine. Energy, 2018, Issue 142, pp. 531 – 545.

Ma N., Lei H., Han Z., et al. Airfoil optimization to improve power performance of a high-solidity vertical axis wind turbine at a moderate tip speed ratio. Energy, 2018, Issue 150, pp. 236 – 252.

Longhuan Du, Ingram, Grant Dominy R. A review of H-Darrieus wind turbine aerodynamic research. Journal of Mechanical Engineering Science. 2019, Vol. 233, Issue (23-24), pp.7590-7616.

Yershina A.K., Yershin Sh.A., Yershin Ch.Sh., Manatbayev R.K. Wind motor. Kazakhstan Republic Patent No. 31662, 2016, Bulletin 15, 3 p. [in Russian]

Sungjun Joo, Heungsoap Choi, Juhee Lee. Aerodynamic characteristics of two-bladed H-Darrieus at various solidities and rotating speeds. Energy. 2015, Vol. 90, Issue P1, pp. 439 – 451.

Yershinа А.К., Yershin Ch.Sh. Progressive innovations in applying of wind energy. Journal of Intern. Scientific Publications: Materials, Methods & Technologies. 2013, Vol. 7, Part 3, pp. 4 – 12.

"

Downloads

How to Cite

Yershina, A., Sakipova, S., & Manatbayev, R. (2019). Some design features of the carousel type wind turbine bidarrieus. Eurasian Physical Technical Journal, 16(2(32), 63–67. https://doi.org/10.31489/2019No2/63-67

Issue

Section

Energy

Most read articles by the same author(s)

1 2 > >> 
Loading...