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Humidity Control Systems for Civil Buildings in Hot Summer and Cold Winter Zone in China

机译:中国炎热的夏季和寒冷冬区民用建筑湿度控制系统

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In the hot summer and cold winter zone, moisture-laden outside air poses real problems for proper ventilation, air-conditioner sizing, and strategies to overcome the reduced dehumidification capacity of more energy-efficient air-conditioning (AC) systems. Based on our research, this paper further provides the rate and characteristics of moisture resources in civil buildings. Although the ventilation rate is limited with the minimum ventilation rate in the sanitation ventilation mode of the air conditioning period, dehumidifying period and heating period, the ventilation rate is unrestricted in thermal comfort ventilation mode. It is suggested that the operating conditions of the forced ventilation system should be determined on both outdoor air temperature and outdoor air relative humidity (RH). Therefore, the ventilation system should satisfy these requirements during prolonged periods of high ambient humidity. After a detailed presentation of the technical issues, this paper gives specific recommendations for providing adequate ventilation, moisture control and dehumidifying for buildings in hot-humid climates, and takes both the indoor environmental quality (IEQ) and the building energy efficiency into account. Supplying conditioned ventilation air to the buildings appears to be a promising approach to solve the heath problems associated with excessive indoor RH by installation of a separately controlled unit to dry and cool outdoor air.
机译:在炎热的夏季和寒冷的冬季区,潮湿的空气外空气造成了适当的通风,空调尺寸和策略的真正问题,以克服更节能空调(AC)系统的减少的除湿能力。基于我们的研究,本文进一步提供了民用建筑中水分资源的速率和特征。尽管通风率受到空调时段的卫生通风模式中的最小通风速率,除湿周期和加热时段,但通风率在热舒适通风模式中不受限制。建议应在室外空气温度和室外空气相对湿度(RH)上确定强制通风系统的操作条件。因此,通风系统应在长期高环境湿度的长时间期间满足这些要求。在详细介绍了技术问题后,本文给出了为热潮湿气候中的建筑物提供了足够通风,水分控制和除湿的具体建议,并考虑了室内环境质量(IEQ)和建筑能效。向建筑物供应调节通风空气似乎是解决与过多的室内RH相关的有希望的方法,通过安装单独控制的单元来干燥和凉爽的室外空气。

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