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Evaluation and thermodynamic analysis of a prototype for air heating

  • Renzo Arimborgo-Romero
  • , Beatriz Salvador-Gutierrez
  • , Edson Espinoza-Tejada
  • , Rosa Sayan-Rivera
  • , Jarumy Davila-Vienrich
  • , Jose Alvarez-Merino
  • Universidad Peruana de Ciencias Aplicadas

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

This study aims to improve a prototype solar collector via hot air that had already been used in San Juan de Tarucani, Arequipa; it was moved to Callao, Peru, to perform new tests at different radiation conditions, latitude, altitude, temperature, and humidity. The methodology followed was to perform tests during the month of March, 2019, at 15° and 45° inclination of the collector with respect to the flat surface of the base and measuring temperatures in the air inlet of the collector and in the outlet that enters the 'shed.' The results determined that the angle change optimizes the heat input, the relation between radiation and temperature, and the day/night variation.

Original languageEnglish
Title of host publication2019 Congreso Internacional de Innovacion y Tendencias en Ingenieria, CONIITI 2019 - Conference Proceedings
EditorsMonica Andrea Rico Martinez
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9781728147468
DOIs
StatePublished - Oct 2019
Event2019 Congreso Internacional de Innovacion y Tendencias en Ingenieria, CONIITI 2019 - 5th International Conference on Innovation and Trends in Engineering, CONIITI 2019 - Bogota, Colombia
Duration: 2 Oct 20194 Oct 2019

Publication series

Name2019 Congreso Internacional de Innovacion y Tendencias en Ingenieria, CONIITI 2019 - Conference Proceedings

Conference

Conference2019 Congreso Internacional de Innovacion y Tendencias en Ingenieria, CONIITI 2019 - 5th International Conference on Innovation and Trends in Engineering, CONIITI 2019
Country/TerritoryColombia
CityBogota
Period2/10/194/10/19

Keywords

  • heating
  • solar collector by air
  • solar energy
  • thermodynamic tests

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