Análisis del rendimiento de paneles solares fotovoltaicos fabricados con silicio

Análisis del rendimiento de paneles solares fotovoltaicos fabricados con silicio

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Berny Alejandro Forero Vélez
Cristian David Esquivel Villamarin

Abstract

This article shows that in a photovoltaic solar system there are different variables that must be considered, since they can affect the performance of the panels, as well as the final result of the electrical energy obtained. All this will be done with emphasis on the construction material of the photovoltaic solar panels, which in this case is silicon, and how this construction material can affect physically, chemically and performance characteristics in the panels. It is also made a mathematical analysis to understand why and how this construction material and other variables are related to the final outcome in the performance of the solar photovoltaic system. The results that are presented in this project will become fundamental to understand the basic operation of a photovoltaic solar plant, and to create in the reader an analytical perspective regarding what type of solar panel to acquire according to the needs that can appear.

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References (SEE)

Alonso, A. (2018). Radiación, Geometría, Recorrido óptico, Irradiancia y HSP. Sun- Fields Europe. Recuperado de: https://www.sfe-solar.com/noticias/articulos/ energia-fotovoltaica-radiacion-geometria-recorrido-optico-irradiancia-y-hsp/

AutoSolar. (2017). Cómo entender la ficha técnica de un panel solar. Recuperado de: https://autosolar.es/blog/aspectos-tecnicos/como-entender-la-ficha-tecnica-de-un-panel-solar.

Cantos, J. (2016). Configuración de instalaciones solares fotovoltaicas. Ediciones Paraninfo.

Ecoinventos (20 de septiembre de 2019). Diferencia entre paneles solares monocristalinos y policristalinos. Recuperado de: https://ecoinventos.com/diferencia-paneles-solares-monocristalinos-policristalinos/

Iqbal, M. (1983). An Introduction to Solar Radiation. Academic Press

Khanna, S., Reddy, K., y Tapas K. Mallick. (2018a). Effect of climate on electrical performance of finned phase change material integrated solar photovoltaic, Solar Energy, 174(1) Pag 593 – 605. doi: 10.1016/j.solener.2018.09.023.

Liu, C.M., Chen, G.B., Chen, H.H. (2019) Cancer cell membrane-cloaked mesoporous silica nanoparticles with a pH-sensitive gatekeeper for cancer treatment, Colloids Surfaces B Biointerfaces, 175(1), 477-486. doi: 10.1016/j.colsurfb.2018.12.038

Llorente, I., Alvarez, L y Blanco D. (2011). Performance model for parabolic trough solar thermal power plants with thermal storage: Comparison to operating plant data. Solar energy, 85(10), 2443-2460. doi: 10.1016/j.solener.2011.07.002

Martínez, M. (2011). Capítulo 11: Silicio. Materiales y materias primas. Recuperado de: http://www.inet.edu.ar/wp-content/uploads/2012/11/silicio.pdf

Rajput, S. (2017). SOLAR ENERGY- Fundamentals, Economic and Energy Analysis. Publisher Nitra

Rutatizibwa, R. (2017). A Review of Organic Photovoltaic Energy Source and Its Technological Designs, International Journal of Photoenergy, 2017. doi: 10.1155/2017/1656512

Torres, P., Jurado, P., Granados, L. y Lozano, L. (2018). Efficiency in solar panels. Revista del Diseño Innovativo, 2(2). Recuperado de: http://www.ecorfan.org/taiwan/research_journals/Diseno_Innovativo/vol2num2/Revista_Diseno_Innovativo_V2_N2_2.pdf

Velandia, O. J. (2018). Estudio y desarrollo de celdas solares basadas en estructuras de silicio cristalino/ silicio amorfo dopado (tesis de grado) Instituto Nacional de Astrofísica, Óptica y Electrónica Puebla, San Andrés Cholula, México.

Unidad de Planeación Minero Energética, Instituto de Hidrología, Meteorologia y Estudio Ambientales, (2005). Atlas Radiación Solar de Colombia. Apéndice A Relaciones Astronómicas Sol - Tierra. Recuperado de: http://www.upme.gov.co/Docs/Atlas_Radiacion_ Solar/7-Apendice_A.pdf