CFD modelling for atmospheric pollutants/aerosols studies within the complex terrains of urban areas and industrial sites
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Inderscience Publishers
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Computational fluid dynamic (CFD) modelling of pollution dispersion and chemical conversion to aerosol particles in the atmospheric boundary layer (ABL) has been studied. The investigation focused on the numerical modelling above complex orographic terrains of urban areas and industrial sites including the dispersion of toxic substances in the air as a result of accidents. A finite-rate model of chemical reactions, including the turbulence chemistry for modelling the reaction between nitric acid and ammonia, has been applied. As supporting experiments, online monitoring of the spatial distribution of pollutants and aerosols has been performed above real complex areas. Minimal detectable concentrations 8 µg m−3 (SO2), 20 µg m−3 (NO2), 2 µg m−3 (O3) and minimal detectable absorptivity 5 × 10−7 cm−1 (aerosols) have been reached.
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International Journal of Environment and Pollution. 2014, vol. 54, issue 1, p. 73-90.
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Load more Publikační činnost Katedry bezpečnosti práce a procesů / Publications of Department of Occupational and Process Safety (040)
Publikační činnost Katedry environmentálního inženýrství / Publications of Department of Environmental Engineering (546)
Publikační činnost Katedry hydromechaniky a hydraulických zařízení / Publications of Department of Hydrodynamics and Hydraulic Equipment (338)
Publikační činnost Katedry požární ochrany / Publications of Department of Fire Protection (030)
Publikační činnost Laboratoře výzkumu a managementu rizik / Publications of Laboratory for Risk Research and Management (023)