Preview

Alternative Energy and Ecology (ISJAEE)

Advanced search
Open Access Open Access  Restricted Access Subscription or Fee Access

Orthogonal Turbine for Free Rivers and Channels

https://doi.org/10.15518/isjaee.2019.13-15.12-23

Abstract

The paper discusses the problem of using the energy of rivers without creating the dams and flooding vast areas and notes that there is a progress in the implementation and development of the ideas of patent in 1931 (the speed of the workers turbine blades is higher than flow rate). The paper gives the diagrams of the new turbines of this type, for example a balanced 6-tier single-blade turbine, turbine-spiral, a balanced twoblades turbine. Moreover, the paper deals with the features free-threaded orthogonal turbines in the streams of the limited width and depth. The most important characteristic of a turbine is the turbine's power factor that is equal to the ratio of the energy of the rotating turbine to the kinetic energy of the flow in the current tube passing through the turbine circuit. There is a possibility of a significant increase in the power of the turbine in comparison with the conditions of use unlimited streams. The increase in turbine power in a straitened flow is associated with an increase in the flow velocity in the turbine on the approach to the rear section of the blades’ track. It is set the requirements of the turbine parameters for maximum power at a given water flow and the permissible level rise in the river. These requirements relate to the certain rules for selecting the number of blades (and solidity) of the turbine, taking into account the permissible increasing in the water level (backup) in front of the turbine. The paper notes the turbines instability at low speed of rotation, describes a turbine design modification that eliminates this drawback. Modification of the high-speed orthogonal turbines is the use of accelerating blades with a cup-shaped cross-section, placed on the route within a diameter 2 times smaller than the diameter of the main (working) blades of the smoothly streamlined profile. It is concluded that all considered variants of turbines for streams with limited cross-section, the design of the blade system may be made rigid, which eliminates the single central shaft (axle), replacing it with a reference semi-shafts.

About the Author

V. M. Lyatkher
British American Turbines, Inc.; New Energetics Inc.
United Kingdom
Viktor Lyatkher - D.Sc. in Engineering; Professor of Moscow University of Environmental Protection; Member of Academy of Water Researches, Russia; Project Engineer and Researcher, British American Turbines, Inc.; President of Clean Energy Co. (USA); New Energetics Inc. (USA); CEO of “Novaya energetika” Ltd. (Russia)  

The Arts Building, 2nd Floor, Morris Place, London, UK, NA 31G  , 

563 Bartow Ln., Cleveland, OH 44143




References

1. Darrieus G. Turbine Having its Rotating Shaft Transverse to the Flow of Current, U.S. Patent 1834018, December 1931.

2. "L-180 Poseidon" according to Ljungstrom project. Canadian Patent 337.120. Oct.6, 1978, Danish 4146/79. Ljungstrom O. New concepts in vertical axis wind turbines (VAWT) and applications to large-MW size off-shore wind turbine systems, AIAA/seri-Wind Energy Conference, 1980, Boulder, Colorado.

3. Renzo, D. Wind Power. William Andrew, Incorporated, 1979; 347 p.

4. Malyshev N.A., Lyatkher V.M. High-power wind power stations (Vetroenergeticheskie stantsii bol'shoi moshchnosti). Gidrotekhnicheskoe stroitel'stvo, 1983;(12):38–44 (in Russ.).

5. Lyatkher V. Orthogonal Power Unit, Patent USA 8007235 B1, 2011, Int.Cl. F03B 3/12 (2006.01).

6. Lyatkher V. Orthogonal Turbine Having a Balanced Blade, Patent USA 9657715 B1, 2017, Int.Cl.F03D 3/00, 3/06, 9/00, (2006.01) F03B 3/04, 17/06, 13/10 (2006.01).

7. Lyatkher V.M., Ivanov I.I., Skosareva S.M. Experimental study of orthogonal units for the use of energy currents (Eksperimental'nye issledovaniya ortogonal'nyh agregatov dlya ispol'zovaniya energii techenii). Hydrotechnical Construction, 1986;(11):33–38 (in Russ.).

8. Lyatkher V.M. Renewable energy (Vozobnovlyaemaya energetika). Effective solutions. Moscow – Izhevsk, 2011 (in Russ.).

9. Ivanov I.I., Ivanov G.A., Kondrat'ev V.N., Polinkovsky I.A. Improving the efficiency of small hydropower plants (Povyshenie effektivnosti malyh GES). Hydrotechnical Construction, 1991;(1) (in Russ.).

10. Bernstein L.B., Istorik B.L., Lyatkher V.M., Usachev I.N., Shpolyansky Yu.B. Hydroturbine installation (Gidroturbinnaya ustanovka). Copyright Certificate of the USSR 1606731 A1, Bul. Inventions 42, 11/15/90, priority from 03.28.88 (in Russ.).

11. Istorik B.L, Proudovsky A.M., Usachev I.N., Shpolyansky Yu.B. Use of orthogonal turbines at tidal power plants (Ispol'zovanie ortogonal'nyh turbin na prilivnyh elektrostantsiyah). Hydrotechnical Construction, 1998;(12):35–44 (in Russ.).

12. Istorik B.L., Usachev I.N., Shpoliansky Yu.B. New orthogonal hydro-unit for tidal power at the Kislogub-I TPP (Novyi ortogonal'nyi gidroagregat dlya prilivnoi elektrostantsii na Kislogubskoi PES). Hydraulic engineering, 2007;(4):24–30; Shpolyansky Yu.B. Application of an orthogonal turbine in low pressure and free flows (Primenenie ortogonal'noi turbiny v nizkonapornyh i svobodnyh potokah). Hydrotechnical construction, 2011:(4):20–27 (in Russ.).

13. Evdokimov S.V. Concentrators of the flow of wind power plants and the justification of their parameters (Kontsentratory potoka vetrovyh energoustanovok i obosnovanie ih parametrov). Abstract of dissertation Ph.D. tech. Sciences: LPI, 2004 (in Russ.).

14. Hu S. Su-Yuan and Cheng Jung-Ho. Innovatory designs for ducted wind turbines. Renewable Energy, 2008;33:1491–1498.

15. Author Title. US patent 4012163, cl. F03D 7/06, published 15.03.1977 (in Russ.).

16. Lyatkher V.M. Spherical orthogonal energy aggregate (Sharovoi ortogonal'nyi energeticheskii agregat). Patent of the Russian Federation, no. 2661225, Index of international classification. 2018, priority from 07/26/2017 (in Russ.).


Review

For citations:


Lyatkher V.M. Orthogonal Turbine for Free Rivers and Channels. Alternative Energy and Ecology (ISJAEE). 2019;(13-15):12-23. (In Russ.) https://doi.org/10.15518/isjaee.2019.13-15.12-23

Views: 1080


ISSN 1608-8298 (Print)