Title of article
Pollutant dispersion in urban street canopies
Author/Authors
Jiyang Xia، نويسنده , , Dennis Y.C. Leung، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2001
Pages
11
From page
2033
To page
2043
Abstract
The effects of building configurations on pollutant dispersion around street canopies were studied numerically. The dispersion of pollutants emitted from ground sources was simulated by continuously discharging large number of particles into the computation domain. The mean wind velocities at each time-step were firstly computed by solving the time-dependent incompressible Navier–Stokes equations, while the fluctuated velocities were determined using a statistical procedure. The trajectories of the discharged particles were obtained from a Lagrangian particle model. Three categories of numerical simulation were conducted to study the effect of different canopy geometries on the pollutant dispersion. The computed wind field data were consistent with the wind field characteristics described in the previous wind tunnel studies. A counter-clockwise vortex was found resulting in high pollutant concentration at the windward side of the downstream building of the street canopy and low pollutant concentration at the leeward side of the upstream building. The increase in height of the urban roughness buildings would facilitate the pollutant dispersion in urban street canopy under certain building configurations. Two or more vortices stacked vertically in a street canopy were found when height of the upstream and downstream buildings of a street canopy was increased, preventing pollutants from escaping out of the canopy.
Keywords
Lagrangian particle model , Street canyon , Multi-buildings , Digital tunnel , Numerical simulation
Journal title
Atmospheric Environment
Serial Year
2001
Journal title
Atmospheric Environment
Record number
756417
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