Preview

Alternative Energy and Ecology (ISJAEE)

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

CALCULATION OF THE POWER DISTRIBUTION OF ELECTROMAGNETIC RADIATION IN THE SOLAR CONCENTRATORS

Abstract

In the current work the method of power distribution evaluation was developed, which takes into account not only the path of solar beams into inner area of concentrator, but beams intensity too. The mirror of the concentrator assumes as a set of small flat segments, and the issue is solving in quasi-classical Kirchhoff approximation. Current method can be used for radiation intensity maps creating for free shape concentrators and for optimization of the mirror-receiver system.

About the Authors

A. Yu. Gaevski
National Technical University of Ukraine “Kiev Polytechnic Institute”
Russian Federation


O. V. Ushkalenko
National Technical University of Ukraine “Kiev Polytechnic Institute”
Russian Federation


References

1. Даффи Дж.А., Бекман У.А. Тепловые процессы с использованием солнечной энергии. М.: Мир, 1977.

2. Kalogirou S.A. Solar Energy Engineering: Processes and Systems. London: Academic Press, 2009.

3. Elfouhaily T.M., Guerin C.A. A critical survey of approximate scattering wave theories from Random rough surfaces // Waves in Random Media, V.14, p. R1 (2004).

4. Борн М., Вольф Э. Основы оптики. М.: Наука, 1973.

5. Beckmann P. and Spizzichino A. The scattering of electromagnetic waves from rough surfaces. Oxford - London - N.Y. - Paris: Pergamon Press, 1963.

6. Гаевский А.Ю., Молодкин В.Б., Носик В.Л. Отражение рентгеновских лучей от шероховатой профилированной поверхности // Металлофиз. новейшие технол. 2010. Т. 32, № 12. С. 1613.

7. Gaevskii A., Molodkin V., Nosik V. X-ray scattering from an irregular surface: Two-scale model // Crystallography Reports. 2010. Vol. 55, No. 7. P. 1135.

8. Исимару А. Распространение и рассеяние волн в случайно-неоднородных средах. Т. 1. М.: Мир, 1981.

9. Groot Gregory G., John Koshel R. Modeling the operating conditions of solar concentrator systems, Lambda Research Corporation: 25 Porter Road, Littleton, MA 01460-1434.

10. Sukhatme S.P. Solar Energy: Principles of Thermal Collection and Storage, 2nd ed., New Delhi: Tata Mc Graw-Hill Publishing Company Limited, 1996.

11. Rabl A. Concentrating Collectors in Solar Energy Technology Handbook, Dickinson, W.C. & Cheremisinoff, P.N. eds., New York: Marcel Dekker, 1980.

12. Antonio Parretta, Francesco Aldeghe, Andrea Antonini, Mariange la Butturi, Paolo Zurru. Optical Simulation of PV Solar Concentrators by two Inverse Characterization Methods // International Journal of Optics and Applications 2012, 2(5): 62-71.

13. Fauziah Sulaiman, Nurhayati Abdullah, Balbir Singh Mahinder Singh. A Simulated Design and Analysis of a Solar Thermal Parabolic Trough Concentrator, World Academy of Science // Engineering and Technology International Journal of Environmental, Ecological, Geological and Mining Engineering Vol. 6, No. 12, 2012.


Review

For citations:


Gaevski A.Yu., Ushkalenko O.V. CALCULATION OF THE POWER DISTRIBUTION OF ELECTROMAGNETIC RADIATION IN THE SOLAR CONCENTRATORS. Alternative Energy and Ecology (ISJAEE). 2014;(23):39. (In Russ.)

Views: 337


ISSN 1608-8298 (Print)