Energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: The case for Manizales-Colombia

Colombia has been focusing on the implementation and use of renewable energies (RE). One of those RE is photovoltaic solar energy, which has great potential in Colombia, as average radiation in the country is 4.5 KWh/m2day. Research therefore needs to be conducted in the country to enhance the use o...

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Main Authors: Luis Fernando Mulcué-Nieto, Luisa Fernanda Echeverry-Cardona, Alejandra María Restrepo-Franco, Gerardo Andrés García-Gutiérrez, Francy Nelly Jiménez-García, Llanos Mora-López
Format: Article
Language:English
Published: Elsevier 2020-11-01
Series:Energy Reports
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352484720313482
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spelling doaj-627097f6499f4b08ad5e3891aad8989f2020-12-23T05:01:39ZengElsevierEnergy Reports2352-48472020-11-01628282835Energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: The case for Manizales-ColombiaLuis Fernando Mulcué-Nieto0Luisa Fernanda Echeverry-Cardona1Alejandra María Restrepo-Franco2Gerardo Andrés García-Gutiérrez3Francy Nelly Jiménez-García4Llanos Mora-López5Departamento de Física y Matemática, Universidad Autónoma de Manizales, Manizales, Caldas, Antigua Estación del Ferrocarril, Colombia; Departamento de Física y Química, Universidad Nacional de Colombia Sede Manizales, Manizales, Caldas, Colombia; Corresponding author at: Departamento de Física y Matemática, Universidad Autónoma de Manizales, Manizales, Caldas, Antigua Estación del Ferrocarril, Colombia.Departamento de Física y Matemática, Universidad Autónoma de Manizales, Manizales, Caldas, Antigua Estación del Ferrocarril, ColombiaDepartamento de Física y Matemática, Universidad Autónoma de Manizales, Manizales, Caldas, Antigua Estación del Ferrocarril, ColombiaCentro de Automatización Industrial, Sena Regional Caldas, ColombiaDepartamento de Física y Matemática, Universidad Autónoma de Manizales, Manizales, Caldas, Antigua Estación del Ferrocarril, Colombia; Departamento de Física y Química, Universidad Nacional de Colombia Sede Manizales, Manizales, Caldas, ColombiaDepartmento de Lenguajes y Ciencias de la Computación, - ETSI Informática - Universidad de Málaga, Campus de Teatinos, 29071 Malaga, SpainColombia has been focusing on the implementation and use of renewable energies (RE). One of those RE is photovoltaic solar energy, which has great potential in Colombia, as average radiation in the country is 4.5 KWh/m2day. Research therefore needs to be conducted in the country to enhance the use of photovoltaic solar systems in specific climate conditions, and according to the installation parameters of the photovoltaic systems. Moreover, the integration of the photovoltaic solar systems in the city of Manizales-Colombia is at an early stage, mainly because of the belief that they are not feasible due to the cold city’s climate and cloud cover. This paper presents the results of the energy performance assessment of two solar photovoltaic systems installed at the National Learning Service — SENA, in Manizales-Colombia. The mean focus in this research was to study the performance of the monocrystalline and polycrystalline photovoltaic solar modules, in the climate conditions of Manizales-Colombia.The solar systems in question are monocrystalline and polycrystalline photovoltaic solar systems, both connected to the grid. The test variables were the room temperature, module temperature, inverter temperature, solar radiation at the testing site, input and output voltages and currents of the inverter. The data was gathered every 10 min for each one of the variables, and the experiment was conducted over a four-season period.In general, Manizales has favourable climate conditions for the installation of photovoltaic solar systems, regardless of whether polycrystalline or mono-silicon is used. This is supported mainly by the temperature losses analysis, as these values were equal to or under 3%. The main cause for the optimal performance of the photovoltaic generation modules is due to the fact that the ambient temperature of the city rarely rises above 25 °C. There is no significant difference between the performance of each generator, depending on the winter or summer seasons. One possible reason is that seasonal differences are not as extreme in Colombia due to its latitudinal location.http://www.sciencedirect.com/science/article/pii/S2352484720313482Photovoltaic solar energyPerformance ratioMonocrystallinePolycrystallineOff-gridConnected to the grid
collection DOAJ
language English
format Article
sources DOAJ
author Luis Fernando Mulcué-Nieto
Luisa Fernanda Echeverry-Cardona
Alejandra María Restrepo-Franco
Gerardo Andrés García-Gutiérrez
Francy Nelly Jiménez-García
Llanos Mora-López
spellingShingle Luis Fernando Mulcué-Nieto
Luisa Fernanda Echeverry-Cardona
Alejandra María Restrepo-Franco
Gerardo Andrés García-Gutiérrez
Francy Nelly Jiménez-García
Llanos Mora-López
Energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: The case for Manizales-Colombia
Energy Reports
Photovoltaic solar energy
Performance ratio
Monocrystalline
Polycrystalline
Off-grid
Connected to the grid
author_facet Luis Fernando Mulcué-Nieto
Luisa Fernanda Echeverry-Cardona
Alejandra María Restrepo-Franco
Gerardo Andrés García-Gutiérrez
Francy Nelly Jiménez-García
Llanos Mora-López
author_sort Luis Fernando Mulcué-Nieto
title Energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: The case for Manizales-Colombia
title_short Energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: The case for Manizales-Colombia
title_full Energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: The case for Manizales-Colombia
title_fullStr Energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: The case for Manizales-Colombia
title_full_unstemmed Energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: The case for Manizales-Colombia
title_sort energy performance assessment of monocrystalline and polycrystalline photovoltaic modules in the tropical mountain climate: the case for manizales-colombia
publisher Elsevier
series Energy Reports
issn 2352-4847
publishDate 2020-11-01
description Colombia has been focusing on the implementation and use of renewable energies (RE). One of those RE is photovoltaic solar energy, which has great potential in Colombia, as average radiation in the country is 4.5 KWh/m2day. Research therefore needs to be conducted in the country to enhance the use of photovoltaic solar systems in specific climate conditions, and according to the installation parameters of the photovoltaic systems. Moreover, the integration of the photovoltaic solar systems in the city of Manizales-Colombia is at an early stage, mainly because of the belief that they are not feasible due to the cold city’s climate and cloud cover. This paper presents the results of the energy performance assessment of two solar photovoltaic systems installed at the National Learning Service — SENA, in Manizales-Colombia. The mean focus in this research was to study the performance of the monocrystalline and polycrystalline photovoltaic solar modules, in the climate conditions of Manizales-Colombia.The solar systems in question are monocrystalline and polycrystalline photovoltaic solar systems, both connected to the grid. The test variables were the room temperature, module temperature, inverter temperature, solar radiation at the testing site, input and output voltages and currents of the inverter. The data was gathered every 10 min for each one of the variables, and the experiment was conducted over a four-season period.In general, Manizales has favourable climate conditions for the installation of photovoltaic solar systems, regardless of whether polycrystalline or mono-silicon is used. This is supported mainly by the temperature losses analysis, as these values were equal to or under 3%. The main cause for the optimal performance of the photovoltaic generation modules is due to the fact that the ambient temperature of the city rarely rises above 25 °C. There is no significant difference between the performance of each generator, depending on the winter or summer seasons. One possible reason is that seasonal differences are not as extreme in Colombia due to its latitudinal location.
topic Photovoltaic solar energy
Performance ratio
Monocrystalline
Polycrystalline
Off-grid
Connected to the grid
url http://www.sciencedirect.com/science/article/pii/S2352484720313482
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