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Indoor-outdoor pollutant concentration modelling: a comprehensive urban air quality and exposure assessment

J. L. Santiago; E. Rivas; R. Buccolieri; A. Martilli; M. G. Vivanco; R. Borge; O. S. Carlo; F. Martín
Air Quality, Atmosphere & Health · Vol. 15, Issue 9 · pp. 1583-1608 · 2022

Abstract

This paper is devoted to the investigation of the relationship between concentrations of traffic-related pollutants at pedestrian level in the street and indoor pollutant concentrations inside different rooms of different floors of a standard building. CFD modelling covering the whole urban environment, including the interior of a target building, is used to explicitly simulate wind flow and pollutant dispersion outdoors and indoors. A wide range of scenarios considering different percentage and location of open windows and different wind directions is investigated. A large variability of indoor pollutant concentrations is found depending on the floor and configuration of the open/closed windows, as well as the wind direction and its incidence angle. In general, indoor pollutant concentrations decrease with floor, but this decrease is different depending on the scenario and the room investigated. For some conditions, indoor concentrations higher than the spatially averaged values in the street (up to a ratio of 1.4) are found in some rooms due to the high pollutant concentrations close to open windows. This behavior may lead, on average, to higher exposure inside the room than outside although, in general, indoor pollutant concentrations are lower than that found in the street at pedestrian level. Results are averaged for all scenarios and rooms being the average ratio between indoor and oudoor concentrations 0.56 ± 0.24, which is in accordance with previous studies in real buildings. This paper opens to a unified approach for the assessment of air quality of the total indoor and outdoor environment.

Bibliographic Information

JournalAir Quality, Atmosphere & Health
PublisherSpringer
Publication Date2022-09-01
Publication Year2022
Volume15
Issue9
Pages1583-1608
Document TypeJournal Article
Print ISSN1873-9318
eISSN1873-9326
DOI10.1007/s11869-022-01204-0

Access Information

NARA Access Coverage2008-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11869
Publisher PageOpen Publisher Page
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