Analysis of the Metal Structure of a Greenhouse Intended for Automated Vertical Agriculture
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Abstract
The analysis of the metal structure of a greenhouse intended for the production of vegetables, using vertical agriculture technology, is carried out in the present work. The greenhouse will be installed in “San Juan Raboso” Community, belonging to Izúcar de Matamoros Municipality, State of Puebla, Mexico, in response to the community need of food and as part of the strategic project developed by the Center for Interdisciplinary Research and Service in Science, Nature, Society and Culture (CIISCINASyC). The analysis of the metal structure of the greenhouse was carried out applying the Finite Element Method. The objective of the work was to evaluate the resistance capacity and functionality of the greenhouse, by determining the load system that acts on the greenhouse, as well as the distribution of stresses and displacements in the structure.
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References
AGUDELO-MANRIQUE, D.A.; ARMAS-RÍOS, V.S.; RADILLO-LÓPEZ, J.M.; TORREBLANCA-IRIARTE, E.: “Diseño de un sistema para el monitoreo de un invernadero”, 2015.
ASCE: “Minimum design loads for buildings and other structures: SEI∕ ASCE 7-05”, En: Ed. ASCE Reston, Va, 2005.
BANCO INTERAMERICANO DE DESARROLLO: Panorama de las administraciones públicas América Latina y el Caribe 2020, Ed. Inter-American Development Bank, 2020, ISBN: 92-64-87463-1.
BESA-GONZÁLVEZ, A.; CHULIÁ, F.J.: Diseño de máquinas, Ed. Editorial de la Universidad Politécnica de Valencia, Valencia, España, 2016, ISBN: 84-9048-530-5.
CFE-MÉXICO: Manual De Diseño De Obras Civiles. Diseño Por Viento, Inst. Comisión Federal De Electricidad (CFE), México D. F., 2017.
FAIRES, M.V.: Diseño de elementos de máquinas, Ed. Editorial Limusa, 4ta ed., México D. F., 2018, ISBN: 968-18-4207-3.
FAO, FIDA, OPS, WFP Y UNICEF, O.: Panorama de la seguridad alimentaria y nutricional en América Latina y el Caribe, Ed. Country/Territory: Latin America and the Caribbean, Licencia: CC BY-NC-SA, N.13, ed., Santiago de Chile, Chile, 150 p., 2018, ISBN: 978-92-5-133665-6.
GONZÁLEZ, M.H.; RODRÍGUEZ-MUÑOZ, N.A.; ESCOBEDO-BRETADO, J.; MARTÍN-DOMÍNGUEZ, I.: “Diseño y simulación de un invernadero asistido con energía renovable para Durango”, Revista de Innovación Sistemática, 1(1): 33-45, 2017.
INIFED-MÉXICO: Normas y Especificaciones para Estudios Proyectos, Construcción e Instalaciones, Ed. Instituto Nacional De La Infraestructura Física Educativa (INIFED), vol. 4 Tomo III, Diseño Por Viento, Seguridad Estructural, México D. F., 2017.
KOSAI, T.: “Eficiencia en el uso de recursos del sistema de producción de planta cerrada con luz artificial: concepto, estimación y aplicación a la planta de fábrica”, : 447-461, pp.446-461, 2013, DOI: http://dx.doi.org/10.2183.
NIFED-MÉXICO: “Normas y especificaciones para estudios proyectos construcción e instalaciones”, Habilidad y funcionamiento, 4, 2011.
NMX-E-255-CNCP-2013: Minimum Desing Loads for Buildings and other Structures (SEI/ASCE 7-05), México D. F., 2013.
ORTIZ-DOMÍNGUEZ, M.; CRUZ-AVILÉS, A.; MUÑOS-SÁNCHEZ, Y.: “Diseño de máquinas”, Ingenio y Conciencia Boletín Científico de la Escuela Superior Ciudad Sahagún, 5(9), 2018, ISSN: 2007-784X.
TOLEDO-FREIRE, A.: “Diseño de edificios altos por cargas de viento”, Publisher: Quito/PUCE/2015, 2015.
VANEGAS-USECHE, L.V.: Diseño de elementos de máquinas, Ed. Universidad Tecnológica de Pereira, Publisher: Universidad Tecnológica de Pereira p., 2018, ISBN: 958-722-301-2.