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An experimental study on the performances of a radiation-based task/ambient air conditioning system applied to sleeping environments

机译:基于辐射的任务/环境空调系统应用于睡眠环境的性能的实验研究

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摘要

A sleeping person is naturally immobile in a relatively small space. Hence, task ambient air conditioning (TAC) can be best applied to a sleeping environment because of its proven performances in energy saving. However, when using previously developed the TAC systems for sleeping environment applications, cold draft was a serious issue and could hardly be avoided due to a high air velocity and a low air temperature inside an occupied zone. Therefore, in the experimental study reported in this paper, a radiation-based TAC (R-TAC) system has been developed, and its performances experimentally evaluated. in this paper, firstly, an experimental setup for a prototype R-TAC system, and experimental conditions and methods are reported. This is followed by presenting experimental results on the thermal comfort and ventilation performance. Finally, the issues of condensation risk when using the proposed R-TAC system are discussed. The study results presented in this paper have shown that the use of the R-TAC system could not only result in better thermal comfort and ventilation performances, but also effectively resolve the cold draft problem. In addition, the potential problem of potential condensation on a surface may be resolved by raising the panel surface temperature, or using a lower fresh air supply humidity. (C) 2017 Elsevier B.V. All rights reserved.
机译:睡觉的人在相对较小的空间中自然不会动。因此,任务环境空气调节(TAC)可以在睡眠环境中得到最好的应用,因为它在节能方面已被证明具有出色的性能。但是,当将先前开发的TAC系统用于睡眠环境应用时,冷风是一个严重的问题,由于所占区域内的高风速和低空气温度很难避免。因此,在本文报道的实验研究中,已经开发了基于辐射的TAC(R-TAC)系统,并对其性能进行了实验评估。在本文中,首先,对原型R-TAC系统进行了实验设置,并报道了实验条件和方法。接下来是关于热舒适性和通风性能的实验结果。最后,讨论了使用建议的R-TAC系统时出现凝结风险的问题。本文提出的研究结果表明,使用R-TAC系统不仅可以带来更好的热舒适性和通风性能,而且可以有效地解决冷风问题。另外,可以通过提高面板表面温度或使用较低的新鲜空气供应湿度来解决表面上潜在的冷凝现象。 (C)2017 Elsevier B.V.保留所有权利。

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