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Capability of air exchange rate to predict ventilation of three-dimensional street canyons

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    0509725 - ÚT 2020 RIV FR eng C - Conference Paper (international conference)
    Kluková, Zuzana - Nosek, Štěpán - Fuka, V.
    Capability of air exchange rate to predict ventilation of three-dimensional street canyons.
    EPJ Web of Conferences. Paris: EDP Sciences, 2019, č. článku 02042. 213. E-ISSN 2100-014X.
    [EFM18 - Experimental Fluid Mechanics 2018. Prague (CZ), 13.11.2018-16.11.2018]
    Institutional support: RVO:61388998
    Keywords : 3D street canyon * ventilation * air exchange rate * large-eddy simulation
    OECD category: Meteorology and atmospheric sciences
    https://www.epj-conferences.org/articles/epjconf/pdf/2019/18/epjconf_efm18_02042.pdf

    As most of the world’s population lives in cities, it is critical to understand dispersion processes of pollutants in urban areas. This study focuses on so called air exchange rate (ACH) index, which is frequently used by numerical studies to determine ventilation of street canyons without a simulation of a pollution source. These studies applied the ACH on idealised 2D street canyons, where the ventilation acts only through the one opening roof top. There are two pertinent questions: i) is the ACH really capable to predict the ventilation of a street canyon without knowing of a pollutant source, and ii) how much the ACH differs between 2D and 3D street canyons? To answer these questions, we performed large-eddy simulations of pollution of complex 3D street canyons from ground-level line sources. We computed ACHs and spatially-average concentrations for three different street canyons and compared these quantities with those from previous studies. Results clearly demonstrate that these quantities strongly depend not only on street-canyon geometry but also on geometry of surrounding buildings. It is also shown that 2D canyon gives unrealistic result for retention of pollutant within an urban street canyon. The ACH might lead to significant underestimation of the street-canyon ventilation if a source would be outside the canyon.
    Permanent Link: http://hdl.handle.net/11104/0302617

     
     
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