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VERTICAL-AXIAL TWO-ROTOR WIND POWER UNIT – HBI-ROTOR

Abstract

Climate change is one of the most widely discussed issues in the world today. This problem is devoted to publications in Newspapers and magazines, television reports, discussions of scientists, speeches of politicians. The transition to renewable energy sources is a global process and is being implemented with broad political support from many countries, including the Republic of Kazakhstan. The article deals with the use of wind energy in Kazakhstan and the characteristics of the designs of the new version of the Darrieus wind turbine, HBI-rotary thermal power plants with high technical and economic indicators. Kazakhstan group of scientists-enthusiasts on the use of wind energy in order to reduce the level of incoming greenhouse effects over the past 20 years has been developing vertical-axial devices (Darrieus type) with two coaxially arranged rotation rolls.

About the Authors

A. K. Yershina
Kazakh National Women’s Teacher Training University
Kazakhstan

Doctor sciences of Physics and Mathematics, Professor

Almaty



A. N. Karymbay
Kazakh National Women’s Teacher Training University
Kazakhstan

2 - Master's physics, 6М01000-Physics

Almaty



References

1. Horiuchi K., Ushiyama I. and Seki K. - Straight wing vertical axis wind turbines: a flow analysis // Wind Engineering. - v. 29. – 2005. No.3. – P.243-252

2. Guerri, Anas Sakout and Khedidja Bouhadef - Simulations of the Fluid Flow around a rotating Vertical Axis Wind Turbine // Wind Engineering. – v.31. – 2007. –No.3. – P.149-163

3. Islam, M., Ting, D. S-K. and Fartaj, A. - Desirable Airfoil Features for Smaller-Capacity Straight-Bladed VAWT // Wind Engineering. - V.31. – 2007. – No.3. – P.165–196.

4. Timothy J. McCoy and Dayton A. Griffin - Control of Rotor Geometry and Aerodynamics: Retractable Blades and Advanced Concepts // Wind Engineering. - V.32. – 2008. – No.1. – P.13-26.

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

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

7. https://wwindea.org/blog/2019/02/25/wind-power-capacity-worldwide-reaches-600-gw-539-gw-added-in-2018/

8. Безруких П.П. Использование энергии ветра. Техника, экономика, экология. – М.: Колос, 2008. – 196 с.

9. Ершина А. К., Ершин Ш. А., Жапбасбаев У. К. Основы теории ветротурбины Дарье. - Алматы: КазгосИНТИ, 2001. – 104 с.

10. Предварительный патент №20748 РК, F032D 9/00 (2006/01). Вертикально-осевая составная ветротурбина карусельного типа (варианты)/ / Ершин Ш.А. Ершина А.К. и др. - № 2006/0165.1; заявлено 15.02.2006; опубл. 16.02.2009, бюл. № 2.

11. Shahbaz Yershin, AinakulYershina. Vertical-axial compound wind turbine of rotor-type. ASME – ATI – UIT 2010 Conference on Thermal and Environmental lssues in Energy Systems. Sorrento, Italу, 2010. – P. 621-625.

12. Ершина А.К. Теория и практика использования возобновляемых источников энергии. Учебное пособие. – Алматы: «Эверо», 2016. – 220 с.

13. Yershinа А.К., Yershin Сh. Sh., Manatbayev R.K., Tulepbergenov A.К. Vertical-axial component wind turbine with a high coefficient using for wind energy. //Journal of International Scientific Publications: Materials, Metods& Technologies. Vol. 6, Part 3. 2012, European Union. ISSN 1313-2539, Published at: http://www.science-journals.eu 2012 – P. 231-236.

14. Ершина А.К., Бижанова А.Т. Разработка и создание перспективных ветроагрегатов карусельного типа. Материалы восьмой всероссийской научной молодежной школы с международным участием «Возобновляемые источники энергии». – Москва, «Университетская книга» 2012. – С. 32-37.

15. Ершина А.К., Копенбаева А.С. Новая перспективная версия ветроагрегата Дарье. Материалы всероссийской научной молодежной школы с международным участием «Возобновляемые источники энергии». – Москва, «Университетская книга» 2014. – С. 26.


Review

For citations:


Yershina A.K., Karymbay A.N. VERTICAL-AXIAL TWO-ROTOR WIND POWER UNIT – HBI-ROTOR. Bulletin of Kazakh National Women's Teacher Training University. 2019;(4):72-79. (In Kazakh)

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ISSN 2306-5079 (Print)