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An experimental study on indoor thermal comfort of the coupled radiation panels with household replacement fresh air system

机译:更换家用新风系统耦合辐射板室内热舒适性的实验研究

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摘要

Yangtze Region of China has high temperature in summer and low temperature in winter, with high humidity most of the year. The conventional household air conditioner cannot control temperature and humidity separately. Recently, the research on temperature and humidity independent control mainly focused on large-scale buildings; however, study on small-scale buildings throughout the year was limited. This paper introduces a novel household air-conditioning system suits for small-scale buildings in hot-humid climate region, named coupled radiation panels with household replacement fresh air (RP&HRFA) system, which could independently control the temperature and relative humidity of the indoor air. The RP&HRFA system can be operated in five different modes so as to be adaptive to different weather conditions all year round. In this paper, an experimental study under three operating modes, namely, summer, transitive season A, and winter B, were carried out. The overall and local thermal comfort indexes of the system were investigated under stable experiment operation conditions. The experimental results indicated that these indexes basically met the requirements of ISO7730 and ANSI/ASHRAE Standard 55-2010. Practical application: This paper introduced a novel household air-conditioning system suits for small-scale buildings in hot-humid climate region, which could independently control the temperature and relative humidity of the indoor air. The experimental results under three operating modes indicated that the system could provide an acceptable indoor thermal comfort for occupants. Such a system could be applied to small-scale buildings in hot humid region for its good thermal comfort.
机译:中国扬子地区夏季夏季高温,冬季低温,一年中大部分时间湿度较高。传统的家用空调无法单独控制温度和湿度。近年来,温湿度独立控制的研究主要集中在大型建筑物上。但是,全年对小型建筑的研究是有限的。本文介绍了一种适用于湿热气候地区小型建筑物的新型家用空调系统,即带有家用替代新鲜空气(RP&HRFA)系统的耦合辐射板,该系统可独立控制室内空气的温度和相对湿度。 。 RP&HRFA系统可在五种不同模式下运行,以全年适应不同的天气条件。本文进行了夏季,过渡季节A和冬季B三种工作模式下的实验研究。在稳定的实验操作条件下研究了系统的整体和局部热舒适指数。实验结果表明,这些指标基本符合ISO7730和ANSI / ASHRAE标准55-2010的要求。实际应用:本文介绍了一种新型的家用空调系统,适用于湿热气候地区的小型建筑物,该系统可以独立控制室内空气的温度和相对湿度。在三种操作模式下的实验结果表明,该系统可以为乘员提供可接受的室内热舒适度。这样的系统由于其良好的热舒适性而可以应用于湿热地区的小型建筑物。

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