Investigating cigarette-smoke indoor pollution in a controlled environment. International Journal of Biometeorology, 34, 98–104. Too hot for comfort: the heatwaves in Greece in 19. 18 (Draft Document), European Commission, JRC. Indoor air quality and its impact on man, evaluation of VOC emissions from building products: solid flooring materials. Atmospheric Environment, 35, 4531–4543.ĮEA (European Environmental Agency) (2001). VOC concentrations measured in personal samples and residential indoor, outdoor and workplace microenvironments in Expolis–Helsinki, Finland. D., Jurvelin, J., Saarela, K., & Jantunen, M. Atmospheric Environment, 36, 265–277.Įdwards, R. Residential Indoor PM 10 and PM 2.5 in Hong Kong and the Elemental Composition. European scientific assessment of the atmospheric effects of aircraft emission. A., Hauglustaine, D., Isaksen, I., Lelieveld, J., Lister, D. Atmospheric Environment, 31, 529–544.īrasseur, G. Indoor air quality in homes, offices and restaurants in Korea urban areas-indoor/outdoor relationships. On the study of a sick building-the case of the Athens air traffic control tower. Thermal Environment Conditions for Human Occupancy, ASHRAE, Atlanta.Īssimakopoulos, V. Ventilation for Acceptable Air Quality, ASHRAE, Atlanta.ĪSHRAE Standard 55 (2004). 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.ĪSHRAE Standard 62-2001 rev (2003). Regarding the third cycle, 1-year measurements collected from the system to examine its effectiveness. Intervention scenarios were formulated and applied to the system to improve indoor conditions, when and where necessary. 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. Following that, an automated system (IMAS) was designed and employed to continuously monitor indoor and outdoor CO 2, TVOCs, temperature and relative humidity. Results revealed that pollution levels vary according to the occupancy and the kind of activity. 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. The aim of the first cycle was to identify the IAQ status, the second to investigate the effectiveness of certain measures taken, and the third to continuously monitor and control IAQ. 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. 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.
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