CFD modelling of small particle dispersion: The influence of the turbulence kinetic energy in the atmospheric boundary layer

被引:109
作者
Gorle, C. [1 ]
van Beeck, J. [2 ]
Rarnbaud, P. [2 ]
Van Tendeloo, G. [1 ]
机构
[1] Univ Antwerp, Dept Phys, EMAT, B-2020 Antwerp, Belgium
[2] Von Karman Inst Fulid Dynam, B-1640 Rhode St Genese, Belgium
关键词
Computational Fluid Dynamics (CFD); Numerical simulation; Atmospheric Boundary Layer (ABL); Turbulence kinetic energy; Particle dispersion; WIND-TUNNEL; POLLUTANT DISPERSION; FLOW DISTRIBUTIONS; COMPUTATIONAL DATA; STREET CANYON; BUILDINGS; CUBE;
D O I
10.1016/j.atmosenv.2008.09.060
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
When considering the modelling of small particle dispersion in the lower part of the Atmospheric Boundary Layer (ABL) using Reynolds Averaged Navier Stokes simulations, the particle paths depend on the velocity profile and on the turbulence kinetic energy. from which the fluctuating velocity components are derived to predict turbulent dispersion. It is therefore important to correctly reproduce the ABL, both for the velocity profile and the turbulence kinetic energy profile. For RANS simulations with the standard k-epsilon model, Richards and Hoxey (1993. Appropriate boundary conditions for computational wind engineering models using the k-epsilon turbulence model. Journal of Wind Engineering and Industrial Aerodynamics 46-47,145-153.) proposed a set of boundary conditions which result in horizontally homogeneous profiles. The drawback of this method is that it assumes a constant profile of turbulence kinetic energy, which is not always consistent with field or wind tunnel measurements. Therefore, a method was developed which allows the modelling of a horizontally homogeneous turbulence kinetic energy profile that is varying with height. By comparing simulations performed with the proposed method to simulations performed with the boundary conditions described by Richards and Hoxey (1993. Appropriate boundary conditions for computational wind engineering models using the k-epsilon turbulence model. Journal of Wind Engineering and Industrial Aerodynamics 46-47, 145-153.), the influence of the turbulence kinetic energy on the dispersion of small particles over flat terrain is quantified. (c) 2008 Elsevier Ltd. All rights reserved.
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页码:673 / 681
页数:9
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