Actual measurement and analysis of winter thermal environment of a graduate student studio in Shenyang based on Airpak numerical simulation

This paper takes a graduate workshop in shenyang as the research object, and uses Airpak software to conduct numerical simulation analysis on the air distribution and thermal comfort of the fan coil side air supply mode in winter. The measured air supply temperature is 25°C, air supply speed in the...

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Main Authors: Feng Guohui, Zhou Ziqiang, He Yong, Song Jiasen
Format: Article
Language:English
Published: EDP Sciences 2022-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/23/e3sconf_roomvent2022_03028.pdf
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author Feng Guohui
Zhou Ziqiang
He Yong
Song Jiasen
author_facet Feng Guohui
Zhou Ziqiang
He Yong
Song Jiasen
author_sort Feng Guohui
collection DOAJ
description This paper takes a graduate workshop in shenyang as the research object, and uses Airpak software to conduct numerical simulation analysis on the air distribution and thermal comfort of the fan coil side air supply mode in winter. The measured air supply temperature is 25°C, air supply speed in the x direction for 0.8m / s, 1.5m / s and 2.3m / s three gears, from east to west up to back air supply 3mode. With the increase of air supply speed, the temperature of the working area gradually increases, and the wind speed increases. PMV index and PPD index were used to evaluate the indoor comfort under the three air supply speeds. The air sup 3ply speeds of 1.5m/s and 2.3m/s can meet the requirements of indoor comfort. According to the distribution of personnel, 18 measuring points were set for measurement. The comparison between the simulation results and the measured results showed a consistent trend, which verified the feasibility and accuracy of Airpak for indoor thermal environment comfort analysis.
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spelling doaj.art-a68b12ccc388400c88dd973a87e1fa692022-12-22T02:09:46ZengEDP SciencesE3S Web of Conferences2267-12422022-01-013560302810.1051/e3sconf/202235603028e3sconf_roomvent2022_03028Actual measurement and analysis of winter thermal environment of a graduate student studio in Shenyang based on Airpak numerical simulationFeng Guohui0Zhou Ziqiang1He Yong2Song Jiasen3School of Municipal and Environmental Engineering, Shenyang Jianzhu UniversitySchool of Municipal and Environmental Engineering, Shenyang Jianzhu UniversitySchool of Municipal and Environmental Engineering, Shenyang Jianzhu UniversitySchool of Municipal and Environmental Engineering, Shenyang Jianzhu UniversityThis paper takes a graduate workshop in shenyang as the research object, and uses Airpak software to conduct numerical simulation analysis on the air distribution and thermal comfort of the fan coil side air supply mode in winter. The measured air supply temperature is 25°C, air supply speed in the x direction for 0.8m / s, 1.5m / s and 2.3m / s three gears, from east to west up to back air supply 3mode. With the increase of air supply speed, the temperature of the working area gradually increases, and the wind speed increases. PMV index and PPD index were used to evaluate the indoor comfort under the three air supply speeds. The air sup 3ply speeds of 1.5m/s and 2.3m/s can meet the requirements of indoor comfort. According to the distribution of personnel, 18 measuring points were set for measurement. The comparison between the simulation results and the measured results showed a consistent trend, which verified the feasibility and accuracy of Airpak for indoor thermal environment comfort analysis.https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/23/e3sconf_roomvent2022_03028.pdfthermal comfortnumerical simulationairpakthermal environmentsupply air velocity
spellingShingle Feng Guohui
Zhou Ziqiang
He Yong
Song Jiasen
Actual measurement and analysis of winter thermal environment of a graduate student studio in Shenyang based on Airpak numerical simulation
E3S Web of Conferences
thermal comfort
numerical simulation
airpak
thermal environment
supply air velocity
title Actual measurement and analysis of winter thermal environment of a graduate student studio in Shenyang based on Airpak numerical simulation
title_full Actual measurement and analysis of winter thermal environment of a graduate student studio in Shenyang based on Airpak numerical simulation
title_fullStr Actual measurement and analysis of winter thermal environment of a graduate student studio in Shenyang based on Airpak numerical simulation
title_full_unstemmed Actual measurement and analysis of winter thermal environment of a graduate student studio in Shenyang based on Airpak numerical simulation
title_short Actual measurement and analysis of winter thermal environment of a graduate student studio in Shenyang based on Airpak numerical simulation
title_sort actual measurement and analysis of winter thermal environment of a graduate student studio in shenyang based on airpak numerical simulation
topic thermal comfort
numerical simulation
airpak
thermal environment
supply air velocity
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2022/23/e3sconf_roomvent2022_03028.pdf
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AT heyong actualmeasurementandanalysisofwinterthermalenvironmentofagraduatestudentstudioinshenyangbasedonairpaknumericalsimulation
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