SciELO - Scientific Electronic Library Online

 
vol.29Propuesta metodológica para el estudio de la viabilidad de la agricultura campesina y su testeo en dos granjas de Santiago del Estero (Argentina)La producción de brócoli en la actividad agroindustrial en México y su competitividad en el mercado internacional índice de autoresíndice de assuntospesquisa de artigos
Home Pagelista alfabética de periódicos  

Serviços Personalizados

Journal

Artigo

Indicadores

Links relacionados

  • Não possue artigos similaresSimilares em SciELO

Compartilhar


Acta universitaria

versão On-line ISSN 2007-9621versão impressa ISSN 0188-6266

Resumo

ALFARO AYALA, Jorge Arturo  e  CRESPO QUINTANILLA, Jesús Alberto. Thermal-fluid dynamic study of a laboratory level prototype of a solar water heater that reuses plastic bottles. Acta univ [online]. 2019, vol.29, e2147.  Epub 11-Set-2020. ISSN 2007-9621.  https://doi.org/10.15174/au.2019.2147.

This work presents an investigation of the performance of a solar water heater made of plastic bottles (recycled material). The study was carried out through numerical simulations with the computational fluid dynamics (CFD) and tests at a laboratory level prototype that reuses plastic bottles of polyethylene terephthalate (PET). Water is heated through the reception of the solar radiation on the surface of the PET bottle. The prototype was made of plastic filament called polylactic acid (PLA) using a 3D printing. The results showed that the solar water heater that reuses PET bottles reaches a maximum temperature of 315 K (42 ºC). The validation of the CFD numerical model was made with the experimental results, obtaining relative errors less than 1.69%. This work presents an investigation of the performance of a solar water heater made of plastic bottles (recycled material). The study was carried out through numerical simulations with the computational fluid dynamics (CFD) and tests at a laboratory level prototype that reuses plastic bottles of polyethylene terephthalate (PET). Water is heated through the reception of the solar radiation on the surface of the PET bottle. The prototype was made of plastic filament called polylactic acid (PLA) using a 3D printing. The results showed that the solar water heater that reuses PET bottles reaches a maximum temperature of 315 K (42 ºC). The validation of the CFD numerical model was made with the experimental results, obtaining relative errors less than 1.69%.

Palavras-chave : Solar heater; prototype; PET; 3D printing; CFD simulation.

        · resumo em Espanhol     · texto em Espanhol