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- W2023171350 abstract "The structure of city surface seriously affects transport and diffusion of pollutant aerosol particles in the fog weather. So dynamic model population balance model (PBM) of aerosol particles and multiphase‐coupled flow model were established to describe the fluid‐particle system of fog. Based on the Eulerian‐Lagrangian method and Multi‐Monte Carlo method, a study of aerosols transportation around city boundary was conducted. The computed results show a part of aerosols change into droplets during the formation of fog, and the average sizes of aerosols, droplets are about 0.032 7 μm and 28.7 μm with time evolution to 60 min. For the development of fog, with time of 60 min and wind of 2 m/s, the number of aerosol is down to 84.5% of initial value, and the average particle size is down to 22.1 μm accordingly. During the dissipation of fog, the numbers of aerosol and fog droplet are decreased to the 1.65% and 0.016 5% of initial value. As wind speed rising, the turbulent motion strength of particles is increased. Eventually, the droplets have almost disappeared, and a small number of aerosols are still suspended in the atmosphere. The computed results reflect the transport and dynamic characteristics for respirable aerosols around city boundary during three stages of fog." @default.
- W2023171350 created "2016-06-24" @default.
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- W2023171350 date "2011-01-01" @default.
- W2023171350 modified "2023-10-09" @default.
- W2023171350 title "A Study of Aerosols Transportation around City Boundary in the Fog Weather" @default.
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- W2023171350 doi "https://doi.org/10.1063/1.3651926" @default.
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