Evaluation of Integral Effect of Thermal Comfort, Air Quality and Draught Risk for Desks Equipped with Personalized Ventilation Systems

This work evaluates the integral effect of thermal comfort (TC), indoor air quality (IAQ) and Draught Risk (DR) for desks with four personalized ventilation (PV) systems. The numerical study, for winter and summer thermal conditions, considers a virtual chamber, a desk, four different PV systems, fo...

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Main Authors: Eusébio Conceição, Hazim Awbi
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/14/11/3235
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spelling doaj-316d855aca434f0299e111b385a1db362021-06-30T23:01:50ZengMDPI AGEnergies1996-10732021-06-01143235323510.3390/en14113235Evaluation of Integral Effect of Thermal Comfort, Air Quality and Draught Risk for Desks Equipped with Personalized Ventilation SystemsEusébio Conceição0Hazim Awbi1Faculdade de Ciências e Tecnologia—Universidade do Algarve, Campus de Gambelas, 8005-139 Faro, PortugalSchool of Built Environment, University of Reading, Reading RG6 6DF, UKThis work evaluates the integral effect of thermal comfort (TC), indoor air quality (IAQ) and Draught Risk (DR) for desks with four personalized ventilation (PV) systems. The numerical study, for winter and summer thermal conditions, considers a virtual chamber, a desk, four different PV systems, four seats and four virtual manikins. Two different PV configurations, two upper and two lower air terminal devices (ATD) with different distance between them are considered. In this study a coupling of numerical methodology, using one differential and two integral models, is used. The heating, ventilating and air conditioning (HVAC) system performance in this work is evaluated using DR and room air removal effectiveness (ε<sub>DR)</sub> that is incorporated in an Air Distribution Index (ADI). This new index, named the Air Distribution Turbulence Index (ADTI), is used to consider simultaneously the TC, the IAQ, the DR and the effectiveness for heat removal (ε<sub>TC</sub>), contaminant removal (ε<sub>AQ</sub>) and room air removal (ε<sub>DR</sub>). The results show that the ADI and ADTI, are generally higher for Case II than for Case I, increase when the inlet air velocity increases, are higher when the exit air is located at a height 1.2 m than when is located at 1.8 m, and are higher for summer conditions than for winter conditions. However, the values are higher for the ADI than ADTI.https://www.mdpi.com/1996-1073/14/11/3235numerical simulationpersonalized ventilationthermal comfortair qualityDraught RiskAir Distribution Index
collection DOAJ
language English
format Article
sources DOAJ
author Eusébio Conceição
Hazim Awbi
spellingShingle Eusébio Conceição
Hazim Awbi
Evaluation of Integral Effect of Thermal Comfort, Air Quality and Draught Risk for Desks Equipped with Personalized Ventilation Systems
Energies
numerical simulation
personalized ventilation
thermal comfort
air quality
Draught Risk
Air Distribution Index
author_facet Eusébio Conceição
Hazim Awbi
author_sort Eusébio Conceição
title Evaluation of Integral Effect of Thermal Comfort, Air Quality and Draught Risk for Desks Equipped with Personalized Ventilation Systems
title_short Evaluation of Integral Effect of Thermal Comfort, Air Quality and Draught Risk for Desks Equipped with Personalized Ventilation Systems
title_full Evaluation of Integral Effect of Thermal Comfort, Air Quality and Draught Risk for Desks Equipped with Personalized Ventilation Systems
title_fullStr Evaluation of Integral Effect of Thermal Comfort, Air Quality and Draught Risk for Desks Equipped with Personalized Ventilation Systems
title_full_unstemmed Evaluation of Integral Effect of Thermal Comfort, Air Quality and Draught Risk for Desks Equipped with Personalized Ventilation Systems
title_sort evaluation of integral effect of thermal comfort, air quality and draught risk for desks equipped with personalized ventilation systems
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2021-06-01
description This work evaluates the integral effect of thermal comfort (TC), indoor air quality (IAQ) and Draught Risk (DR) for desks with four personalized ventilation (PV) systems. The numerical study, for winter and summer thermal conditions, considers a virtual chamber, a desk, four different PV systems, four seats and four virtual manikins. Two different PV configurations, two upper and two lower air terminal devices (ATD) with different distance between them are considered. In this study a coupling of numerical methodology, using one differential and two integral models, is used. The heating, ventilating and air conditioning (HVAC) system performance in this work is evaluated using DR and room air removal effectiveness (ε<sub>DR)</sub> that is incorporated in an Air Distribution Index (ADI). This new index, named the Air Distribution Turbulence Index (ADTI), is used to consider simultaneously the TC, the IAQ, the DR and the effectiveness for heat removal (ε<sub>TC</sub>), contaminant removal (ε<sub>AQ</sub>) and room air removal (ε<sub>DR</sub>). The results show that the ADI and ADTI, are generally higher for Case II than for Case I, increase when the inlet air velocity increases, are higher when the exit air is located at a height 1.2 m than when is located at 1.8 m, and are higher for summer conditions than for winter conditions. However, the values are higher for the ADI than ADTI.
topic numerical simulation
personalized ventilation
thermal comfort
air quality
Draught Risk
Air Distribution Index
url https://www.mdpi.com/1996-1073/14/11/3235
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AT hazimawbi evaluationofintegraleffectofthermalcomfortairqualityanddraughtriskfordesksequippedwithpersonalizedventilationsystems
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