Solar energy in bus stops a modern and avant-garde application
DOI:
https://doi.org/10.18779/ingenio.v4i1.368Keywords:
Chiapas, energy, photovoltaic, Mexico, solar panelAbstract
Energy efficiency is a relevant issue globally due to the increasing difficulty of accessing energy sources with minimal environmental impacts, according to the International Energy Agency in 2016 the percentage of renewables worldwide was 24.5% [9], In this sense, the object of the article is to transmit the research of a multidisciplinary group that is supported by engineering to determine renewable energy conditions in a pilot project, the project on the conditioning of photovoltaic energy applied at bus stops eliminating energy from conventional sources along the Albino Corzo boulevard, in the city of Chiapas in the Tuxtla Gutiérrez department of Mexico.
The study methodology is quantitative based on calculation results of an investigative nature and action, the results are acceptable, contrasted with the incorporation of an arrangement of five (5) simulated solar panels in a computer program for the rabbit type bus stop that reduces 48.37 [kg] of CO2 per year to the environment.
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References
Alexandru, M, (2013). Sustainability assessment of electricity generation technologies using weighted multi criteria decision analysis.
Berrío, Luis Humberto; Zuluaga, Carlos, (2014). Smart Grid y la energía solar fotovoltaica para la generación distribuida: una revisión en el contexto energético mundial. Universidad del Norte, Ingeniería y Desarrollo. Vol. 32 n.° 2: 369-396, 2014. ISSN: 0122-3461 (impreso). 2145-9371 (on line).
Burns, J, (2009). Solar Energy Processes. New York, EE.UU. John Wiley & Sons.
Cabrerizo, E, (2012). Instalaciones Solares Fotovoltaicas. Sevilla, España.
Conermex SA, (2015). Energía Solar, soluciones en energías renovables, paneles solares. Disponible en: http://www.conermex.com.mx/
Energía Solar y Eólica, (2015). Energía Fotovoltaica. Disponible en: http://www.eolicaysolar.com/
Gómez-Luna, Eduardo; Fernando-Navas, Diego; Aponte-Mayor, Guillermo; Betancourt-Buitrago, Luis Andrés, (2014). Metodología para la revisión bibliográfica y la gestión de información de temas científicos, a través de su estructuración y sistematización, Dyna, vol. 81, núm. 184, abril, 2014, pp. 158-163, Universidad Nacional de Colombia
Instituto de la tecnología y formación, (2013). Energía solar fotovoltaica, 3ra Edición. Madrid, España.
International Energy Agency, (2016). Solar Heat Worldwide Markets and Contribution to Global Energy Supply. Austria.
ITESM, Instituto Tecnológico de Estudios Superiores de Monterrey, (2015). Gestión y uso eficiente de la energía eléctrica. Monterrey, Nuevo León, México.
Martínez, J, (2012). Dimensionado de instalaciones solares fotovoltaicas. Madrid, España: Paraninfo.
Max Wei, S, (2009). Putting renewable and energy efficiency to work: How many jobs can the clean energy industry generate. California, Estados Unidos: Elsevier.
NASA, Earth Science Enterprise Program, (2015). Surface meteorology and solar energy. Disponible en: https://eosweb.larc.nasa.gov/sse/RETScreen/
Organización de las Naciones Unidas, (2015). Agenda 2030 para el Desarrollo Sostenible, Disponible en: https://academicimpact.un.org/es/content/objetivos-de-desarrollo-sostenible
PNUD, Programa de las Naciones Unidas para el Desarrollo, (2026). ¿Qué son los objetivos de desarrollo sostenible?, Disponible en: https://www.ec.undp.org/content/ecuador/es/home/sustainable-development-goals.html
Romero, J, (2015). Tesina de Máster en Edificación. Análisis del funcionamiento de paneles fotovoltaicos y su utilización. Barcelona, España.
Salgado, F, (2017). Guía de la energía solar fotovoltaica. Madrid, España.
SENER, (2014). Prospectiva del sector eléctrico americano. Dirección General de Planeación Energética. México, D.F. 230.
Sunfields Europe, (2014). Boletín solar fotovoltaico. Santiago de Compostela, La Coruña, España.
Tous, M, (2010). Energía solar fotovoltaica. Barcelona: Editoriales CEAC.
Vasilis, M, (2017). Photovoltaics systems: Life cycle environmental profile and comparisons, ScienceDirect.
XE, (2020). Convertido oficial de dinero, Disponible en: https://www.xe.com/es/currencyconverter/convert/?Amount=5724&From=MXN&To=USD
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Copyright (c) 2021 Héctor Sebastián Naranjo Silva, Diego Javier Punina Guerrero, Juan José Morales Martinez

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