E. Conceicao, Mª Inês Conceição, Mª Manuela Lúcio, João Gomes, H. Awbi
{"title":"Application of Double Skin Facade to Improve the Thermal Comfort Level in an\n Experimental Chamber","authors":"E. Conceicao, Mª Inês Conceição, Mª Manuela Lúcio, João Gomes, H. Awbi","doi":"10.54941/ahfe1002931","DOIUrl":null,"url":null,"abstract":"In this work a DSF system (Double Skin Facade) is used to improve the thermal\n comfort level that the occupants are subjected in an experimental chamber. The DSF\n system, build with three unities, is equipped in a south facade of the experimental\n chamber. The study, made in winter conditions, uses the solar radiation to heated the\n air, injected in the occupied space with 6 people, to improve the thermal comfort\n conditions. The experimental chamber is build with wood and isolating material. The DSF\n system is build with two glass façades, equipped with 15 lamellas. This system,\n subjected to solar radiation, is connected to the interior with a duct system connected\n with two ventilators. The numerical study consider a software that simulates the\n building and the DSF thermal response. The numerical model, that considers buildings\n with complexes topologies, uses energy and mass balance integral equations for the\n opaque surfaces, transparent surfaces and internal air. The software also considers the\n solar radiation simulator, the radiative and convective coefficients evaluation, the\n glass radiative properties and the thermal comfort and internal air quality simulator.\n In accordance with the obtained results the thermal comfort level, using the PMV\n (Predicted Mean Vote), during the occupation time, in general, is in accordance with the\n international standards.","PeriodicalId":383834,"journal":{"name":"Human Interaction and Emerging Technologies (IHIET-AI 2023): Artificial\n Intelligence and Future Applications","volume":"131 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"1900-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Human Interaction and Emerging Technologies (IHIET-AI 2023): Artificial\n Intelligence and Future Applications","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.54941/ahfe1002931","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
In this work a DSF system (Double Skin Facade) is used to improve the thermal
comfort level that the occupants are subjected in an experimental chamber. The DSF
system, build with three unities, is equipped in a south facade of the experimental
chamber. The study, made in winter conditions, uses the solar radiation to heated the
air, injected in the occupied space with 6 people, to improve the thermal comfort
conditions. The experimental chamber is build with wood and isolating material. The DSF
system is build with two glass façades, equipped with 15 lamellas. This system,
subjected to solar radiation, is connected to the interior with a duct system connected
with two ventilators. The numerical study consider a software that simulates the
building and the DSF thermal response. The numerical model, that considers buildings
with complexes topologies, uses energy and mass balance integral equations for the
opaque surfaces, transparent surfaces and internal air. The software also considers the
solar radiation simulator, the radiative and convective coefficients evaluation, the
glass radiative properties and the thermal comfort and internal air quality simulator.
In accordance with the obtained results the thermal comfort level, using the PMV
(Predicted Mean Vote), during the occupation time, in general, is in accordance with the
international standards.
在这项工作中,DSF系统(双层幕墙)被用来提高居住者在实验室内的热舒适度。DSF系统由三个单元组成,安装在实验室内的南立面。本研究在冬季条件下进行,利用太阳辐射加热空气,注入6人居住的空间,以改善热舒适条件。实验室由木材和隔离材料建造。DSF系统由两个玻璃面板组成,配备了15个薄片。该系统受太阳辐射,通过一个与两个通风机相连的管道系统连接到室内。数值研究采用了一种模拟建筑和DSF热响应的软件。该数值模型考虑了具有复杂拓扑结构的建筑物,对不透明表面、透明表面和内部空气使用能量和质量平衡积分方程。该软件还考虑了太阳辐射模拟器、辐射系数和对流系数评估、玻璃辐射性能以及热舒适和室内空气质量模拟器。根据所得结果,采用PMV (Predicted Mean Vote,预测平均投票)计算的热舒适水平,在职业时间内,总体上符合国际标准。