TY - JOUR
T1 - Numerical study of the composite effects of uneven street canyons and time-varying inflows on the air flows and pollutant dispersion
AU - Li, Weijun
AU - He, Yuanping
AU - Zhang, Yunwei
AU - Shui, Qingxiang
AU - Wu, Xinyi
AU - Yu, Chuck Wah
AU - Gu, Zhaolin
N1 - Publisher Copyright:
© The Author(s).
PY - 2020
Y1 - 2020
N2 - The dispersion behavior of pollutants in realistic street canyons is dominated by the pattern of airflow, which is closely linked to the building layout and air inflow at the street canyon boundary. Although uneven building layouts and timevarying inflows have been individually investigated for their influence on air flow pattern and pollutant dispersion in street canyons, the combined effects of these two factors have not been examined. In this study, four street canyon models, one even and three uneven models with different occupying ratios of high-rise buildings, were numerically studied using largeeddy simulation under steady inflow and time-varying inflow conditions. The results showed that both the uneven building layouts and the time-varying inflow condition enhanced the air flow strength and pollutant removal efficiency inside the street canyon. However, the composite effects of these factors were not simply additive. The worst pollutant removal efficiency was observed for air flow in the even street canyon with the steady inflow, which is the typical benchmark case in studies. With the time-varying inflow, the induced updrafts prevented the relatively tall high-rise buildings from restricting the height of the pollutant dispersion during the inflow in the valley. The pattern of the pollutant isoconcentration plane and the time-series curves of normalized concentrations in the even and uneven street canyon models exhibited fluctuant features with the time-varying inflow.
AB - The dispersion behavior of pollutants in realistic street canyons is dominated by the pattern of airflow, which is closely linked to the building layout and air inflow at the street canyon boundary. Although uneven building layouts and timevarying inflows have been individually investigated for their influence on air flow pattern and pollutant dispersion in street canyons, the combined effects of these two factors have not been examined. In this study, four street canyon models, one even and three uneven models with different occupying ratios of high-rise buildings, were numerically studied using largeeddy simulation under steady inflow and time-varying inflow conditions. The results showed that both the uneven building layouts and the time-varying inflow condition enhanced the air flow strength and pollutant removal efficiency inside the street canyon. However, the composite effects of these factors were not simply additive. The worst pollutant removal efficiency was observed for air flow in the even street canyon with the steady inflow, which is the typical benchmark case in studies. With the time-varying inflow, the induced updrafts prevented the relatively tall high-rise buildings from restricting the height of the pollutant dispersion during the inflow in the valley. The pattern of the pollutant isoconcentration plane and the time-series curves of normalized concentrations in the even and uneven street canyon models exhibited fluctuant features with the time-varying inflow.
KW - Airflow pattern
KW - Large-eddy simulation
KW - Pollutant dispersion
KW - Time-varying inflow
KW - Uneven building layouts
UR - https://www.scopus.com/pages/publications/85086758133
U2 - 10.4209/aaqr.2019.06.0322
DO - 10.4209/aaqr.2019.06.0322
M3 - 文章
AN - SCOPUS:85086758133
SN - 1680-8584
VL - 20
SP - 1440
EP - 1453
JO - Aerosol and Air Quality Research
JF - Aerosol and Air Quality Research
IS - 6
ER -