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Experimental comparison of thermal comfort during cooling with a fan coil system and radiant floor system at varying space heights

机译:在不同空间高度使用风扇盘管系统和辐射地板系统进行冷却时的热舒适性的实验比较

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With the development of the economy, architectural space forms and air conditioning systems have become more and more diverse. This paper presents a comparative study on thermal comfort in spaces of varying heights using a fan coil system and a radiant floor system for cooling in the "Comprehensive Experiment Platform of Variable Building Space" located in Tianjin, China. A total of 30 subjects participated the questionnaire survey under 8 different experimental conditions, and the indoor thermal environmental parameters were collected for these two systems at varying space height by instrument monitoring. Results indicated that space height had a significant effect on thermal comfort for both the fan coil system and the radiant floor system. The neutral temperature at space height of 3, 5, 7, and 9 m were 24.8 degrees C, 24.2 degrees C, 23.8 degrees C, and 23.5 degrees C, respectively. The neutral temperature gradually decreased with height of the ceiling when using a fan coil system, which means that participants had greater requirements for cooling at greater heights. In contrast, the neutral temperature at heights of 3, 5, 7, and 9 m were 23.5 degrees C, 23.8 degrees C, 24.1 degrees C, and 24.5 degrees C, respectively. The neutral temperature gradually increased when using the floor radiant system with increasing height, indicating that participants had lower requirements for cooling at greater heights. Furthermore, the results of this study demonstrate that the floor radiant system had an advantage over the fan coil system for thermal comfort in a space of greater height.
机译:随着经济的发展,建筑空间形式和空调系统变得越来越多样化。本文对位于中国天津的“​​可变建筑空间综合实验平台”中使用风机盘管系统和辐射地板系统进行冷却的不同高度空间的热舒适性进行了比较研究。共有30名受试者在8种不同的实验条件下参加了问卷调查,并通过仪器监控收集了这两种系统在不同空间高度的室内热环境参数。结果表明,空间高度对风扇盘管系统和辐射地板系统的热舒适性都有重要影响。空间高度3、5、7和9 m处的中性温度分别为24.8摄氏度,24.2摄氏度,23.8摄氏度和23.5摄氏度。当使用风扇盘管系统时,中性温度随着天花板高度的升高而逐渐降低,这意味着参与者对在更高的高度进行冷却的要求更高。相反,在3、5、7和9 m高度处的中性温度分别为23.5摄氏度,23.8摄氏度,24.1摄氏度和24.5摄氏度。当使用高度增加的地板辐射系统时,中性温度逐渐升高,这表明参与者对在较高高度进行冷却的要求较低。此外,这项研究的结果表明,地板辐射系统相对于风机盘管系统在更大高度的空间中具有较高的热舒适性。

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