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Numerical and experimental analysis of a passive room-dehumidifying system using the sorption property of a wooden attic space

机译:利用木质阁楼空间的吸附特性的被动房间除湿系统的数值和实验分析

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In hot and humid tropical regions, air dehumidification is widely regarded as one of the keys to achieving a better indoor environment. This paper reports results for a passive room-dehumidifying system using an existing attic space as a chamber, wood as a desiccant material, and optimized ventilation and solar energy for system operation. Along with numerical calculations, field measurements were carried out in a test house in Japan over hot and humid summers in 2003 and 2004. It can be inferred that the wooden attic space alone had a relatively high dehumidification potential of 25 g/h m~2 of attic floor area. The fully operational system had relatively high dehumidification potential and could lower the humidity of a bedroom with an occupant by approximately 4-5 g/kg dry air during the night compared to natural ventilation. The electric coefficient of performance of the system was estimated as 15, compared with 3-5 for a typical commercial dehumidification system. Therefore, the system outlined in this study could represent a promising new passive tool for moisture control in hot and humid regions.
机译:在炎热潮湿的热带地区,空气除湿被广泛认为是实现更好的室内环境的关键之一。本文报告了一种被动房间除湿系统的结果,该系统使用现有的阁楼空间作为腔室,木材作为干燥剂,并为系统运行优化了通风和太阳能。与数值计算一起,在2003年和2004年的夏季炎热和潮湿的夏天,在日本的测试室内进行了实地测量。可以推断出,仅木质阁楼空间具有25 g / hm〜2的较高除湿潜能。阁楼面积。完全运行的系统具有相对较高的除湿潜能,与自然通风相比,夜间可将带居住者的卧室的湿度降低约4-5 g / kg干燥空气。该系统的电性能系数估计为15,而典型的商用除湿系统为3-5。因此,本研究中概述的系统可以代表一种有前途的新型被动工具,用于在炎热和潮湿的地区进行水分控制。

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