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Indoor Air Quality Assessment In The Air Traffic Control Tower Of The Athens Airport, Greece

机译:希腊雅典机场空中管制塔内的室内空气质量评估

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摘要

In this study, an assessment of indoor air quality (IAQ) and thermal comfort in the Athens Traffic Control Tower (ATCT) offices of Hellinicon building complex, which is mechanically ventilated, is presented. Measurements of PM_(10), PM_(2.5), TVOCs and CO_2 concentrations were performed during three experimental cycles, while the Thom Discomfort Index was calculated to describe the employees' feeling of discomfort. The aim of the first cycle was to identify the IAQ status, the second to investigate the effective- ness of certain measures taken, and the third to continuously monitor and control IAQ. During the first two cycles, daily spot measurements of TVOCs and CO_2 were performed at various indoor locations and at the respective outdoor air intake positions, in addition with mean 24-h spot measurements of indoor PM_(10) and PM_(2.5). Results revealed that pollution levels vary according to the occupancy and the kind of activity. Following that, an automated system (IMAS) was designed and employed to continuously monitor indoor and outdoor CO_2, TVOCs, temperature and relative humidity. The ultimate scope was to control the IAQ and offer acceptable comfort conditions to the employees, whose work is of special nature and extremely demanding. Intervention scenarios were formulated and applied to the system to improve indoor conditions, when and where necessary. Regarding the third cycle, 1-year measurements collected from the system to examine its effectiveness. While it was shown that discomfort may be attributed to co-existence of unsatisfactory thermal comfort conditions and IAQ, usually the sole predominant factor of discomfort feeling is thermal comfort.
机译:在这项研究中,提出了对Hellinicon建筑群的雅典交通控制塔(ATCT)办公室进行机械通风的室内空气质量(IAQ)和热舒适性的评估。在三个实验周期中对PM_(10),PM_(2.5),TVOC和CO_2浓度进行了测量,同时计算了Thom不适指数来描述员工的不适感。第一个周期的目的是确定IAQ的状态,第二个周期是调查已采取某些措施的有效性,第三个周期是持续监视和控制IAQ。在前两个周期中,除了室内PM_(10)和PM_(2.5)的24小时平均测量值外,还在不同的室内位置和相应的室外进气口位置进行了TVOC和CO_2的每日现场测量。结果表明,污染程度根据占用率和活动类型而异。然后,设计并使用自动化系统(IMAS)连续监视室内和室外的CO_2,TVOC,温度和相对湿度。最终范围是控制IAQ并为员工提供可接受的舒适条件,这些员工的工作具有特殊性且要求很高。制定了干预方案,并在必要时将其应用于系统以改善室内条件。关于第三个周期,从系统收集了1年的测量值以检查其有效性。虽然显示不适感可能归因于不令人满意的热舒适条件和室内空气质量的并存,但通常,不适感的唯一主要因素是热舒适。

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