The influence of an anisotropic Langevin dispersion model on the prediction of micro- and nanoparticle deposition in wall-bounded turbulent flows

Author:

Mehel Amine,Tanière Anne,Oesterlé Benoît,Fontaine Jean-Raymond

Publisher

Elsevier BV

Subject

Pollution,Atmospheric Science,Fluid Flow and Transfer Processes,Mechanical Engineering,Environmental Engineering

Reference63 articles.

1. Arcen, B., Tanière, A., & Oesterlé, B. (2005). Influence of the gravity field on the turbulence seen by heavy discrete particles in an inhomogeneous flow. In: W. Rodi, & M. Mulas (Eds.), Engineering turbulence modelling and experiments 6, Proceedings of the ERCOFTAC international symposium on engineering turbulence modelling and measurements (pp. 949−958). Sardinia, Italy.

2. Stochastic modeling of particle diffusion in a turbulent boundary layer;Bocksell;International Journal of Multiphase Flow,2006

3. An improved model for anisotropic dispersion of small particles in turbulent shear flows;Carlier;Aerosol Science and Technology,2005

4. Large eddy simulation of pollen transport in the atmospheric boundary layer;Chamecki;Journal of Aerosol Science,2009

5. Deposition of particles in a turbulent pipe flow;Chen;Journal of Aerosol Science,1997

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