Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy

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In this work, tests were carried out on the drying of the ají panca in a forced air solar dryer using fifteen vacuum tubes (Heat pipe), a closed cabin where the product is placed and a squirrel cage turbine that is fed by a system of two photovoltaic panels of 50 W each. The heated air is driven by...

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Detalles Bibliográficos
Autores: Palo Tejada, Juan, Puma Taco, Alicia, Campos Falcón, Enriqueta
Formato: artículo
Fecha de Publicación:2020
Institución:Universidad Nacional de Ingeniería
Repositorio:Revistas - Universidad Nacional de Ingeniería
Lenguaje:español
OAI Identifier:oai:oai:revistas.uni.edu.pe:article/853
Enlace del recurso:https://revistas.uni.edu.pe/index.php/tecnia/article/view/853
Nivel de acceso:acceso abierto
Materia:Secador solar de tubos vacío
Ají panca
Sistema fotovoltaico
Solar vacuum tube dryer
Chili pepper
Photovoltaic system
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spelling Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar EnergySecado del ají panca en un secador solar fotovoltaico de tubos al vacío: Colaboración con el XXIII Simposio Peruano de Energía SolarPalo Tejada, JuanPuma Taco, AliciaCampos Falcón, EnriquetaSecador solar de tubos vacíoAjí pancaSistema fotovoltaicoSolar vacuum tube dryerChili pepperPhotovoltaic systemIn this work, tests were carried out on the drying of the ají panca in a forced air solar dryer using fifteen vacuum tubes (Heat pipe), a closed cabin where the product is placed and a squirrel cage turbine that is fed by a system of two photovoltaic panels of 50 W each. The heated air is driven by the turbine from the vacuum tubes to the product in the cabin, in this work the unidimensional Fick difusion equation and numerical methods were used to determine the mass transfer coefficient 2.61 x 10- 9 ms-1 and the effective diffusivity coefficient 1.52 x 10-10 m2 s-1 and it was concluded that the drying temperature of is 55 °C is the one that best fits the results estimated by the model. The solar vacuum tube dryer is capable of maintaining an operating temperature between 50 °C to 55 °C for an irradiance of 450 to 1100 W /m2 between 9:30 am and 2:30 pm, under these conditions, in two days it is possible to dry the ají panca up to 8% moisture content. Traditional drying of this product takes between seven and ten days.En este trabajo se realizaron pruebas del secado del ají panca en un secador solar de aire por coveccion forzada que utiliza  quince tubos de vacío (Heat pipe), una cabina cerrada donde se coloca el producto y una  turbina tipo jaula de ardilla que es alimentada por un sistema de dos paneles fotovoltaicos  de 50W cada uno.  El aire calentado es impulsado por la turbina desde los tubos al vacío hasta el producto que se encuentra en la cabina, en este trabajo se utilizó la ecuacion de difusión de Fick unidimencional y metodos númericos para determinar el coeficiente de transferencia de masa 2.61 x 10-9 m/s y el coeficiente de difusividad efectiva 1.52 x 10-10 m2/s y se concluyo que la temperatura de secado de 55 °C es la que mejor que se ajusta a los resultados estimados por el modelo. El secador solar de tubos al vacío es capaz de mantener una temperatura de operación entre 50 °C a 55 °C  para una irradiancia de 450 a 1100 W/m2  entre las 9:30 y las 14:30  horas,  en estas condiciones,  en dos días se consigue secar el aji panca hasta un 8 % de contenido de humedad. El secado tradicional de este producto, toma entre siete y diez días. Universidad Nacional de Ingeniería2020-05-09info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://revistas.uni.edu.pe/index.php/tecnia/article/view/85310.21754/tecnia.v30i1.853TECNIA; Vol. 30 No. 1 (2020); 34-38TECNIA; Vol. 30 Núm. 1 (2020); 34-382309-04130375-776510.21754/tecnia.v30i1reponame:Revistas - Universidad Nacional de Ingenieríainstname:Universidad Nacional de Ingenieríainstacron:UNIspahttps://revistas.uni.edu.pe/index.php/tecnia/article/view/853/1304https://revistas.uni.edu.pe/index.php/tecnia/article/view/853/1335info:eu-repo/semantics/openAccessoai:oai:revistas.uni.edu.pe:article/8532023-08-04T17:16:37Z
dc.title.none.fl_str_mv Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy
Secado del ají panca en un secador solar fotovoltaico de tubos al vacío: Colaboración con el XXIII Simposio Peruano de Energía Solar
title Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy
spellingShingle Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy
Palo Tejada, Juan
Secador solar de tubos vacío
Ají panca
Sistema fotovoltaico
Solar vacuum tube dryer
Chili pepper
Photovoltaic system
title_short Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy
title_full Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy
title_fullStr Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy
title_full_unstemmed Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy
title_sort Drying aji panca in a solar photovoltaic dryer of heat pipe: Collaboration with the XXIII Peruvian Symposium on Solar Energy
dc.creator.none.fl_str_mv Palo Tejada, Juan
Puma Taco, Alicia
Campos Falcón, Enriqueta
author Palo Tejada, Juan
author_facet Palo Tejada, Juan
Puma Taco, Alicia
Campos Falcón, Enriqueta
author_role author
author2 Puma Taco, Alicia
Campos Falcón, Enriqueta
author2_role author
author
dc.subject.none.fl_str_mv Secador solar de tubos vacío
Ají panca
Sistema fotovoltaico
Solar vacuum tube dryer
Chili pepper
Photovoltaic system
topic Secador solar de tubos vacío
Ají panca
Sistema fotovoltaico
Solar vacuum tube dryer
Chili pepper
Photovoltaic system
description In this work, tests were carried out on the drying of the ají panca in a forced air solar dryer using fifteen vacuum tubes (Heat pipe), a closed cabin where the product is placed and a squirrel cage turbine that is fed by a system of two photovoltaic panels of 50 W each. The heated air is driven by the turbine from the vacuum tubes to the product in the cabin, in this work the unidimensional Fick difusion equation and numerical methods were used to determine the mass transfer coefficient 2.61 x 10- 9 ms-1 and the effective diffusivity coefficient 1.52 x 10-10 m2 s-1 and it was concluded that the drying temperature of is 55 °C is the one that best fits the results estimated by the model. The solar vacuum tube dryer is capable of maintaining an operating temperature between 50 °C to 55 °C for an irradiance of 450 to 1100 W /m2 between 9:30 am and 2:30 pm, under these conditions, in two days it is possible to dry the ají panca up to 8% moisture content. Traditional drying of this product takes between seven and ten days.
publishDate 2020
dc.date.none.fl_str_mv 2020-05-09
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.none.fl_str_mv https://revistas.uni.edu.pe/index.php/tecnia/article/view/853
10.21754/tecnia.v30i1.853
url https://revistas.uni.edu.pe/index.php/tecnia/article/view/853
identifier_str_mv 10.21754/tecnia.v30i1.853
dc.language.none.fl_str_mv spa
language spa
dc.relation.none.fl_str_mv https://revistas.uni.edu.pe/index.php/tecnia/article/view/853/1304
https://revistas.uni.edu.pe/index.php/tecnia/article/view/853/1335
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidad Nacional de Ingeniería
publisher.none.fl_str_mv Universidad Nacional de Ingeniería
dc.source.none.fl_str_mv TECNIA; Vol. 30 No. 1 (2020); 34-38
TECNIA; Vol. 30 Núm. 1 (2020); 34-38
2309-0413
0375-7765
10.21754/tecnia.v30i1
reponame:Revistas - Universidad Nacional de Ingeniería
instname:Universidad Nacional de Ingeniería
instacron:UNI
instname_str Universidad Nacional de Ingeniería
instacron_str UNI
institution UNI
reponame_str Revistas - Universidad Nacional de Ingeniería
collection Revistas - Universidad Nacional de Ingeniería
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repository.mail.fl_str_mv
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