ELECTRICITY GENERATION METHODS FROM SOLAR ENERGY

Author:

Şen Ayvaz BerireORCID,Bayrak Alper1ORCID

Affiliation:

1. BOLU ABANT İZZET BAYSAL ÜNİVERSİTESİ

Abstract

In this study, photovoltaic cells that directly convert solar energy into electrical energy and concentrated solar energy technologies that indirectly generate electrical energy from superheated steam by concentrat-ing solar energy were examined in detail, classified among themselves, and compared technically. Exami-nations on electricity production methods and technologies from solar energy were carried out in three stages. In the first stage, a comprehensive scheme was created by examining the methods of electricity production from solar energy in general. In the second stage, the structures and types of photovoltaic cells were examined. In the third stage, concentrated solar energy systems were examined. Finally, electricity production systems from solar energy are compared and the results are presented.

Publisher

Makina Muhendisleri Odasi (Chamber of Mechanical Engineering)

Reference123 articles.

1. Abdolmaleki, L., and Berardi, U. (2024). Hybrid solar energy systems with hydrogen and electrical energy storage for a single house and a midrise apartment in North America. International Journal of Hydrogen Energy, 52, 1381–1394. Retrieved from https://www.sciencedirect.com/science/article/pii/S0360319923059682

2. Ackermann, A. S. E. (1915). The Utilisation of Solar Energy. Journal of the Royal Society of Arts, 63(3258), 538–565. Retrieved from https://www.jstor.org/stable/41346462

3. Ahmed, M. M., Das, B. K., Das, P., Hossain, M. S., and Kibria, M. G. (2024). Energy management and sizing of a stand-alone hybrid renewable energy system for community electricity, fresh water, and cooking gas demands of a remote island. Energy Conversion and Management, 299, 117865. Retrieved from https://www.sciencedirect.com/science/article/pii/S0196890423012116

4. Alferov, Z. I., Andreev, V. M., Garbuzov, D. Z., Zhilyaev, Y. V, Morozov, E. P., Portnoi, E. L., and Trofim, V. G. (1971). Investigation of the influence of the AlAs-GaAs heterostructure parameters on the laser threshold current and the realization of continuous emission at room temperature. Sov. Phys. Semicond, 4(9), 1573–1575. Retrieved from http://62.44.99.18/photonics/Lasers/Beginning-of-the-Laser-Era-in-the-USSR.pdf#page=132

5. Arias, I., Cardemil, J., Zarza, E., Valenzuela, L., and Escobar, R. (2022). Latest developments, assessments and research trends for next generation of concentrated solar power plants using liquid heat transfer fluids. Renewable and Sustainable Energy Reviews, 168, 112844. https://doi.org/10.1016/j.rser.2022.112844

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