Analysis of the Influence Subjective Human Parameters in the Calculation of Thermal Comfort and Energy Consumption of Buildings

In the present work, we analyze the influence of the designer’s choice of values for the human metabolic index (met) and insulation by clothing (clo) that can be selected within the ISO 7730 for the calculation of the energy demand of buildings. To this aim, we first numerically modeled, u...

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Main Authors: Roberto Robledo-Fava, Mónica C. Hernández-Luna, Pedro Fernández-de-Córdoba, Humberto Michinel, Sonia Zaragoza, A Castillo-Guzman, Romeo Selvas-Aguilar
Format: Article
Language:English
Published: MDPI AG 2019-04-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/12/8/1531
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spelling doaj-0e13edb8b56543ff921b96de39ea74c62020-11-24T20:47:30ZengMDPI AGEnergies1996-10732019-04-01128153110.3390/en12081531en12081531Analysis of the Influence Subjective Human Parameters in the Calculation of Thermal Comfort and Energy Consumption of BuildingsRoberto Robledo-Fava0Mónica C. Hernández-Luna1Pedro Fernández-de-Córdoba2Humberto Michinel3Sonia Zaragoza4A Castillo-Guzman5Romeo Selvas-Aguilar6UMPA, Universidad Politécnica de Valencia, Camino de Vera s/n, 46022 Valencia, SpainUMPA, Universidad Politécnica de Valencia, Camino de Vera s/n, 46022 Valencia, SpainUMPA, Universidad Politécnica de Valencia, Camino de Vera s/n, 46022 Valencia, SpainApplied Physics Department, Universidade de Vigo, As Lagoas s/n, 32004 Ourense, SpainEscuela Politécnica Superior, Universidade da Coruña, Mendizábal s/n, 15403 Ferrol, SpainUniversidad Autónoma de Nuevo León, Facultad de Ciencias Físico-Matemáticas, Av. Universidad S/N, Ciudad Universitaria, San Nicolas de los Garza, Nuevo León 66455, MexicoUniversidad Autónoma de Nuevo León, Facultad de Ciencias Físico-Matemáticas, Av. Universidad S/N, Ciudad Universitaria, San Nicolas de los Garza, Nuevo León 66455, MexicoIn the present work, we analyze the influence of the designer’s choice of values for the human metabolic index (met) and insulation by clothing (clo) that can be selected within the ISO 7730 for the calculation of the energy demand of buildings. To this aim, we first numerically modeled, using TRNSYS, two buildings in different countries and climatologies. Then, we consistently validated our simulations by predicting indoor temperatures and comparing them with measured data. After that, the energy demand of both buildings was obtained. Subsequently, the variability of the set-point temperature concerning the choice of clo and met, within limits prescribed in ISO 7730, was analyzed using a Monte Carlo method. This variability of the interior comfort conditions has been finally used in the numerical model previously validated, to calculate the changes in the energy demand of the two buildings. Therefore, this work demonstrated that the diversity of possibilities offered by ISO 7730 for the choice of clo and met results, depending on the values chosen by the designer, in significant differences in indoor comfort conditions, leading to non-negligible changes in the calculations of energy consumption, especially in the case of big buildings.https://www.mdpi.com/1996-1073/12/8/1531Monte Carlo methodISO 7730TRNSYS
collection DOAJ
language English
format Article
sources DOAJ
author Roberto Robledo-Fava
Mónica C. Hernández-Luna
Pedro Fernández-de-Córdoba
Humberto Michinel
Sonia Zaragoza
A Castillo-Guzman
Romeo Selvas-Aguilar
spellingShingle Roberto Robledo-Fava
Mónica C. Hernández-Luna
Pedro Fernández-de-Córdoba
Humberto Michinel
Sonia Zaragoza
A Castillo-Guzman
Romeo Selvas-Aguilar
Analysis of the Influence Subjective Human Parameters in the Calculation of Thermal Comfort and Energy Consumption of Buildings
Energies
Monte Carlo method
ISO 7730
TRNSYS
author_facet Roberto Robledo-Fava
Mónica C. Hernández-Luna
Pedro Fernández-de-Córdoba
Humberto Michinel
Sonia Zaragoza
A Castillo-Guzman
Romeo Selvas-Aguilar
author_sort Roberto Robledo-Fava
title Analysis of the Influence Subjective Human Parameters in the Calculation of Thermal Comfort and Energy Consumption of Buildings
title_short Analysis of the Influence Subjective Human Parameters in the Calculation of Thermal Comfort and Energy Consumption of Buildings
title_full Analysis of the Influence Subjective Human Parameters in the Calculation of Thermal Comfort and Energy Consumption of Buildings
title_fullStr Analysis of the Influence Subjective Human Parameters in the Calculation of Thermal Comfort and Energy Consumption of Buildings
title_full_unstemmed Analysis of the Influence Subjective Human Parameters in the Calculation of Thermal Comfort and Energy Consumption of Buildings
title_sort analysis of the influence subjective human parameters in the calculation of thermal comfort and energy consumption of buildings
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-04-01
description In the present work, we analyze the influence of the designer’s choice of values for the human metabolic index (met) and insulation by clothing (clo) that can be selected within the ISO 7730 for the calculation of the energy demand of buildings. To this aim, we first numerically modeled, using TRNSYS, two buildings in different countries and climatologies. Then, we consistently validated our simulations by predicting indoor temperatures and comparing them with measured data. After that, the energy demand of both buildings was obtained. Subsequently, the variability of the set-point temperature concerning the choice of clo and met, within limits prescribed in ISO 7730, was analyzed using a Monte Carlo method. This variability of the interior comfort conditions has been finally used in the numerical model previously validated, to calculate the changes in the energy demand of the two buildings. Therefore, this work demonstrated that the diversity of possibilities offered by ISO 7730 for the choice of clo and met results, depending on the values chosen by the designer, in significant differences in indoor comfort conditions, leading to non-negligible changes in the calculations of energy consumption, especially in the case of big buildings.
topic Monte Carlo method
ISO 7730
TRNSYS
url https://www.mdpi.com/1996-1073/12/8/1531
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