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Thermal environmental case study of an existing underfloor air distribution (UFAD) system in a high-rise building in the tropics

机译:热带地区现有地板空气分布(UFAD)系统的热环境案例研究热带地区高层建筑

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The performance of an existing underfloor air distribution (UFAD) system in a renowned high-rise office tower in Malaysia was studied to identify the root cause issues behind the poor indoor air quality. Occupants are the best thermal sensor. The building was detected with the sick building syndrome (SBS) that causes runny noses, flu-like symptoms, irritated skin, and etc. Long period of exposure to indoor air pollutants may increase the occupant's health risk. The parameters such as the space temperature, relative humidity, air movement, air change, fresh air flow rate, chilled water supply and return are evaluated at three stories that consist of five open offices. A full traverse study was carried out at one of the fresh air duct. A simplified duct flow measurement method using pitot-tubes was developed. The results showed that the diffusers were not effective in creating the swirl effect to the space. Internal heat gain from human and office electrical equipment were not drawn out effectively. Besides, relative humidity has exceeded the recommended level. These issues were caused by the poor maintenance of the building. The energy efficiency strategy of the UFAD system comes from the higher supply air temperature. It may leads to insufficient cooling load for the latent heat gained under improper system performance. Special care and considerations in design, construction and maintenance are needed to ensure the indoor air quality to be maintained. Several improvements were recommended to tackle the existing indoor air quality issues. Solar system was studied as one of the innovative method for retrofitting.
机译:研究了马来西亚着名的高层办公大楼现有的地板空气分配(UFAD)系统的表现,识别室内空气质量差的根本原因问题。乘客是最佳的热传感器。通过病人的建筑综合征(SBS)检测到大楼,导致流鼻涕,流感样症状,刺激性皮肤等。长期暴露于室内空气污染物可能会增加占用者的健康风险。在包括五个开放办公室的三个故事中,评估了空间温度,相对湿度,空气运动,空气变化,新鲜空气流量,冷却水供应和返回的参数。在新的空气管道之一进行完整的横向研究。开发了一种使用皮特管的简化管道流量测量方法。结果表明,扩散器在为空间产生旋流效果方面无效。人员和办公设备的内部热量收益没有有效地抽出。此外,相对湿度超过了推荐的水平。这些问题是由建筑物的维护不良引起的。 UFAD系统的能效策略来自供应空气温度较高。它可能导致在系统性能不当下获得的潜热的冷却负荷不足。需要特殊的设计,建筑和维护考虑,以确保保持室内空气质量。建议采用几种改进来解决现有的室内空气质量问题。 Solar系统是作为改造的创新方法之一。

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