Thermal performance and net energy balance of an office building in Mendoza with a trend towards nearly zero energy (nZEB)

Nearly Zero Energy Buildings (nZEB) are emerging as a climate change mitigation strategy in the building sector. Primary energy requirements vary from 25 kWh/m2/year to 120 kWh/m2/year for air conditioning, domestic hot water and auxiliary systems. Thermal and energy monitoring of an office building...

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Autores principales: D'Amanzo, Micaela; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET, Ganem, Carolina; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET, Mercado, María Victoria; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
Formato: Artículo revista
Lenguaje:Español
Publicado: Instituto de Investigaciones Tecnológicas para el Diseño Ambiental del Hábitat Humano 2022
Materias:
Acceso en línea:https://revistas.unne.edu.ar/index.php/arq/article/view/6256
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id I48-R154-article-6256
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institution Universidad Nacional del Nordeste
institution_str I-48
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container_title_str Revistas UNNE - Universidad Nacional del Noroeste (UNNE)
language Español
format Artículo revista
topic Nearly Zero Energy Buildings
Energy Efficiency
Sustainable Architecture
Edificios Energía Casi Nula
Eficiencia Energética
Arquitectura Sustentable
spellingShingle Nearly Zero Energy Buildings
Energy Efficiency
Sustainable Architecture
Edificios Energía Casi Nula
Eficiencia Energética
Arquitectura Sustentable
D'Amanzo, Micaela; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
Ganem, Carolina; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
Mercado, María Victoria; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
Thermal performance and net energy balance of an office building in Mendoza with a trend towards nearly zero energy (nZEB)
topic_facet Nearly Zero Energy Buildings
Energy Efficiency
Sustainable Architecture
Edificios Energía Casi Nula
Eficiencia Energética
Arquitectura Sustentable
author D'Amanzo, Micaela; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
Ganem, Carolina; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
Mercado, María Victoria; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
author_facet D'Amanzo, Micaela; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
Ganem, Carolina; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
Mercado, María Victoria; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
author_sort D'Amanzo, Micaela; Instituto de Ambiente, Hábitat y Energía (INAHE), CONICET
title Thermal performance and net energy balance of an office building in Mendoza with a trend towards nearly zero energy (nZEB)
title_short Thermal performance and net energy balance of an office building in Mendoza with a trend towards nearly zero energy (nZEB)
title_full Thermal performance and net energy balance of an office building in Mendoza with a trend towards nearly zero energy (nZEB)
title_fullStr Thermal performance and net energy balance of an office building in Mendoza with a trend towards nearly zero energy (nZEB)
title_full_unstemmed Thermal performance and net energy balance of an office building in Mendoza with a trend towards nearly zero energy (nZEB)
title_sort thermal performance and net energy balance of an office building in mendoza with a trend towards nearly zero energy (nzeb)
description Nearly Zero Energy Buildings (nZEB) are emerging as a climate change mitigation strategy in the building sector. Primary energy requirements vary from 25 kWh/m2/year to 120 kWh/m2/year for air conditioning, domestic hot water and auxiliary systems. Thermal and energy monitoring of an office building located in the technological development park (Polo TIC) of Godoy Cruz, Mendoza, Argentina (32º 93' S and 68º50' W, elevation 750 m.a.s.l.), cold arid temperate climate (Bwk) was carried out. The objective of this work is to diagnose the thermal performance of a low energy office building and the net energy balance to achieve near zero energy (nZEB) in the region. Two areas of the 2nd floor, open plan and box office, were studied, the result was 116 kWh/m2/year, favourable to reduce energy consumption and enhance the use of clean energy.
publisher Instituto de Investigaciones Tecnológicas para el Diseño Ambiental del Hábitat Humano
publishDate 2022
url https://revistas.unne.edu.ar/index.php/arq/article/view/6256
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first_indexed 2023-03-18T23:07:40Z
last_indexed 2023-03-18T23:07:40Z
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