Foreword
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Moreira, D.M., Vilhena, M.T., Tirabassi, T., Buske, D., and Cotta, R.M., 2005: Near
source atmospheric pollutant dispersion using the new GILTT method. Atmospheric
Environment, 39(34), 6290–6295.
Moreira, D.M., Vilhena, M.T., Buske, D., and Tirabassi, T., 2006. The GILTT solution of
the advection–diffusion equation for an inhomogeneous and nonstationary PBL.
Atmospheric Environment, 40, 3186–3194.
Moreira, D.M., Vilhena, M.T., Buske, D., and Tirabassi, T., 2009: The state-of-art of the GILTT
method to simulate pollutant dispersion in the atmosphere. Atmospheric Research, 92, 1–17.
Pasquill, F. and Smith, F.B., 1983: Atmospheric Diffusion. Ellis Horwood, Chichester, U.K.,
437 pp.
Rizza, U., Gioia, G., Mangia, C., and Marra, G.P., 2003: Development of a grid-dispersion
model in a large eddy simulation generated planetary boundary layer. Nuovo Cimento
Sezione C, 26, 297–309.
Rizza, U., Mangia, C., Carvalho, J.C., and Anfossi, D., 2006: Estimation of the Lagrangian
velocity structure function constant C 0 by large eddy simulation. Boundary-Layer
Meteorology, 120, 25–37.
Rotach, M.W., Vogt, R., Bernhofer, D. et al. 2005: BUBBLE—An urban boundary layer meteorology project. Theoretical and Applied Climatology, 81, 231–261.
San Jose, R, Baklanov A., Sokhi R.S., Karatzas, K., and Perez, J.L., 2008: Air quality modeling. In: Ecological Models, Vol. 1, Encyclopaedia of Ecology, 5 Vols., Elsevier, Oxford,
U.K., pp. 111–123.
Seinfeld, J.H. and Pandis, S.N., 2006: Atmospheric Chemistry and Physics—From Air
Pollution to Climate Change, 2nd edn. John Wiley & Sons, New York, 1232 pp., ISBN
9780471720188.
Sharan, M. and Modani, M., 2005: An analytical study for the dispersion of pollutants in a
fi nite layer under low wind conditions. Pure and Applied Geophysics, 162, 1861–1892.
Sharan, M., Singh, M.P., and Yadav, A.K., 1996: A mathematical model for the atmospheric
dispersion in low winds with eddy diffusivities as linear functions of downwind distance. Atmospheric Environment, 30, 1137–1145.
Siebesma, A.P., Soares, P.M.M., and Teixeira, J., 2006: A combined eddy diffusivity massfl ux approach for the convective boundary layer. Journal of Atmospheric Science, 64,
1230–1248.
Soares, P.M.M., Miranda, P.M.A., Siebesma, A.P., and Teixeira J., 2004: An eddy-diffusivity/
mass-fl ux turbulence closure for dry and shallow cumulus convection. The Quarterly
Journal of the Royal Meteorological Society, 130, 3365–3384.
Sorbjan, Z., 1989: Structure of the Atmospheric Boundary Layer. Prentice Hall, Englewood
Cliffs, NJ, 317 pp.
Taha, H., 2008: Sensitivity of the urbanized MM5 (uMM5) to perturbations in surface properties in Houston Texas. Boundary-Layer Meteorology, 127, 193–218.
Tirabassi, T., 1989: Analytical air pollution and diffusion models. Water, Air, and Soil Pollution,
47, 19–24.
Tirabassi, T., 2003: Operational advanced air pollution modeling. Pure and Applied Geophysics,
160(1–2), 5–16.
Zilitinkevich, S.S., 1991: Turbulent Penetrative Convection, Avebury Technical, Aldershot, 180 pp.
Zilitinkevich, S. and Esau, I., 2007: Similarity theory and calculation of turbulent fl uxes
at the surface for the stably stratifi ed atmospheric boundary layers. Boundary-Layer
Meteorology, 125, 193–296.
Zilitinkevich, S.S., Hunt, J.C.R., Grachev, A.A. et al. 2006: The infl uence of large convective
eddies on the surface layer turbulence. The Quarterly Journal of the Royal Meteorological
Society, 132, 1423–1456.
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