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An experimental study on moisture distribution and a way of mitigating condensation in a bedroom with a radiation-based task air conditioning system applied to sleeping environments

机译:水分分布的实验研究及其利用辐射的任务空调系统在卧室中施加凝结凝结的一种方法研究

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Task/ambient air condition system (TAC) is an excellent air conditioning method because of good performance in thermal comfort, indoor air quality and energy saving, and can be best applied to sleeping environments due to the immobility of a sleeping person. Previously, an R-TAC system for sleeping environments was proposed to deal with the cold-draft problem encountered in C-TAC systems for sleeping environments. However, the potential risk of condensation should not be ignored when using R-TAC systems due to the cold radiant panel. Therefore, a follow-up experimental study on indoor moisture distribution and a way of mitigating condensation in a bedroom when using R-TAC systems was carried out, and are presented in this paper. Firstly, two different settings of the R-TAC system are described. Secondly, moisture distributions in the bedroom, and condensation thresholds of moisture content of the supply air are analyzed and compared at two settings. The experimental results showed that vertical and horizontal moisture distributions in the bedroom were not greatly affected by the height of the supply vent, however, the R-TAC system at Setting 2 performed better in reducing condensation risk as compared with Setting 1.
机译:任务/环境空调系统(TAC)是一种出色的空调方法,因为在热舒适性,室内空气质量和节能方面的性能良好,并且由于睡眠者的不激动力,可以最好地应用于睡眠环境。此前,提出了一种用于睡眠环境的R-TAC系统,以处理C-TAC系统中遇到的睡眠环境中遇到的冷草稿问题。然而,在使用由于冷辐射板引起的R-TAC系统时,不应忽略潜在的冷凝风险。因此,在进行使用R-TAC系统时,对室内湿度分布的后续实验研究及其在卧室中减轻凝结的方式,并在本文中提出。首先,描述了R-TAC系统的两个不同设置。其次,分析了卧室的水分分布以及供应空气的水分含量的冷凝阈值,并在两个设置上进行比较。实验结果表明,通过供应通风口的高度,卧室的垂直和水平分布不会受到大大影响,但是,与设置1相比,设定2的R-TAC系统在降低凝结风险时表现更好。

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