Thermal Comfort Analysis of TAGFRG Roof for Various Hydronic Flow Path Configuration
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A novel combination of the Thermally Activated Cooling System (TABS) and Glass Fiber Reinforced Gypsum (GFRG) was investigated for various water flow path configurations. The proposed combination is called a Thermally Activated Glass Fiber Reinforced Gypsum (TAGFRG) system. In a warm and humid climate, the 3.5 m x 3.5 m x 3.5 m experiment room is built with a TAGFRG roof. The parameters required for thermal comfort index calculation, i.e., surface and air temperature, indoor humidity, and air velocity, are continuously monitored and recorded at an interval of 1 minute using a data acquisition system. The configuration of the various water flow paths is clearly described in the article. The data repository contains the hourly averaged measured data as well as the thermal comfort indices that were calculated.
本研究针对热激活冷却系统(Thermally Activated Cooling System, TABS)与玻璃纤维增强石膏(Glass Fiber Reinforced Gypsum, GFRG)的新型复合形式,就多种水流路径配置方案开展了试验探究。该复合系统被命名为热激活玻璃纤维增强石膏(Thermally Activated Glass Fiber Reinforced Gypsum, TAGFRG)系统。在温热潮湿的气候环境中,研究搭建了尺寸为3.5 m×3.5 m×3.5 m的试验房间,其屋顶采用TAGFRG系统构建。研究人员借助数据采集系统,以1分钟为采样间隔,持续监测并记录热舒适指数计算所需的各项参数,包括表面温度、空气温度、室内相对湿度以及空气流速。各类水流路径的具体配置方案已在本文中详细阐述。本数据集仓库包含经小时平均后的实测数据,以及通过计算得到的热舒适指数。




