154
Air Pollution and Turbulence: Modeling and Applications
Irwin, J.S., Rao, S.T., Petersen, W.B., and Turner, D.B. (1987), Relating error bounds for
maximum concentration estimates to diffusion meteorology uncertainty, Atmos. Environ.
21, 1927–1937.
Lin, J.S. and Hildemann, L.M. (1997), A generalised mathematical scheme to analytically solve
the atmospheric diffusion equation with dry deposition, Atmos. Environ. 31, 59–71.
Mangia, C., Rizza, U., Degrazia, G.A., and Tirabassi, T. (1998), A new formulation of σ y
and σ z for air quality dispersion models, In Air Pollution VI, C.A. Brebbia, C.F. Ratto,
and H. Power (Eds.), Computational Mechanics Publications, Southampton, U.K., pp.
839–848.
Mohan, M. and Siddiqui, T.A. (1977), An evaluation of dispersion coeffi cients for use in air
quality models, Bound. Lay. Meteorol. 84, 177–205.
Moreira, D.M., Carvalho, J.C., and Ttirabassi T. (2005a), Plume dispersion simulation in low wind
conditions in the stable and convective boundary layers, Atmos. Environ. 39, 3643–3650.
Moreira, D.M., Vilhena, M.T., Tirabassi, T., Buske, D., and Cotta, R. (2005b), Near-source
atmospheric pollutant dispersion using the new GILTT method, Atmos. Environ. 39,
6290–6295.
Nieuwstadt, F.T.M. (1980), An analytical solution of the time-dependent, one-dimensional
diffusion equation in the atmospheric boundary layer, Atmos. Environ. 14, 1361–1364.
Nieuwstadt, F.T.M. and de Haan, B.J. (1981), An analytical solution of one-dimensional
diffusion equation in a non-stationary boundary layer with an application to inversion
rise fumigation, Atmos. Environ. 15, 845–851.
Pasquill, F. (1971), Atmospheric dispersion of pollution, Quart. J. Roy. Meteorol. Soc. 97,
369–395.
Pasquill, F. and Smith, F.B. (1983), Atmospheric Diffusion, Halsted Press, John Wiley & Sons,
New York.
Pleim, J.E. and Chang, J.S. (1992), A non-local closure model for vertical mixing in the convective boundary layer, Atmos. Environ. 26A, 6, 965–981.
Roberts, O.F.T. (1923), The theoretical scattering of smoke in a turbulent atmosphere, Proc.
Roy. Soc. 104, 640–648.
Rounds, W. (1955), Solutions of the two-dimensional diffusion equation, Trans. Am. Geophys.
Union 36, 395–405.
Scire, J.S., Robe, F.R., Strimaitis, M.E., and Yamartino, R.J. (1999), A Users’s Guide for the
CALPUFF Dispersion Model, Earth Tech, Inc., Concord, MA.
Scriven, R.A. and Fisher, B.A. (1975), The long range transport of airborne material and its
removal by deposition and washout-II. The effect of turbulent diffusion, Atmos. Environ.
9, 59–69.
Seinfeld, J.H. and Pandis, S.N. (1997), Atmospheric Chemistry and Physics, John Wiley &
Sons, New York.
Smith, F.B. (1957a), The diffusion of smoke from a continuous elevated point source into a
turbulent atmosphere, J. Fluid Mech. 2, 49–76.
Smith, F.B. (1957b), Convection-diffusion processes below a stable layer, Meteorological
Research Committee, N. 1048 and 10739.
Smith, M.E. (1968), Recommended Guide for the Prediction of the Dispersion of Airborne
Effl uents, American Society of Mechanical Engineers, New York.
Stern, A.C. (1976), Air Pollution, Academic Press, New York.
Tagliazucca, M., Nanni, T., and Tirabassi, T. (1985), An analytical dispersion model for sources
in the surface layer, Nuovo Cimento 8C, 771–781.
Taylor, G.I. (1921), Diffusion by continuous movement. Proc. Lond. Math. Soc. 2, 196–211.
Tirabassi, T. (1989), Analytical air pollution and diffusion models, Water Air Soil Pollut. 47,
19–24.
Tirabassi, T. (2003), Operational advanced air pollution modeling, PAGEOPH 160(1–2),
5–16.
© 2010 by Taylor and Francis Group, LLC
Air Pollution and Turbulence: Modeling and Applications
Irwin, J.S., Rao, S.T., Petersen, W.B., and Turner, D.B. (1987), Relating error bounds for
maximum concentration estimates to diffusion meteorology uncertainty, Atmos. Environ.
21, 1927–1937.
Lin, J.S. and Hildemann, L.M. (1997), A generalised mathematical scheme to analytically solve
the atmospheric diffusion equation with dry deposition, Atmos. Environ. 31, 59–71.
Mangia, C., Rizza, U., Degrazia, G.A., and Tirabassi, T. (1998), A new formulation of σ y
and σ z for air quality dispersion models, In Air Pollution VI, C.A. Brebbia, C.F. Ratto,
and H. Power (Eds.), Computational Mechanics Publications, Southampton, U.K., pp.
839–848.
Mohan, M. and Siddiqui, T.A. (1977), An evaluation of dispersion coeffi cients for use in air
quality models, Bound. Lay. Meteorol. 84, 177–205.
Moreira, D.M., Carvalho, J.C., and Ttirabassi T. (2005a), Plume dispersion simulation in low wind
conditions in the stable and convective boundary layers, Atmos. Environ. 39, 3643–3650.
Moreira, D.M., Vilhena, M.T., Tirabassi, T., Buske, D., and Cotta, R. (2005b), Near-source
atmospheric pollutant dispersion using the new GILTT method, Atmos. Environ. 39,
6290–6295.
Nieuwstadt, F.T.M. (1980), An analytical solution of the time-dependent, one-dimensional
diffusion equation in the atmospheric boundary layer, Atmos. Environ. 14, 1361–1364.
Nieuwstadt, F.T.M. and de Haan, B.J. (1981), An analytical solution of one-dimensional
diffusion equation in a non-stationary boundary layer with an application to inversion
rise fumigation, Atmos. Environ. 15, 845–851.
Pasquill, F. (1971), Atmospheric dispersion of pollution, Quart. J. Roy. Meteorol. Soc. 97,
369–395.
Pasquill, F. and Smith, F.B. (1983), Atmospheric Diffusion, Halsted Press, John Wiley & Sons,
New York.
Pleim, J.E. and Chang, J.S. (1992), A non-local closure model for vertical mixing in the convective boundary layer, Atmos. Environ. 26A, 6, 965–981.
Roberts, O.F.T. (1923), The theoretical scattering of smoke in a turbulent atmosphere, Proc.
Roy. Soc. 104, 640–648.
Rounds, W. (1955), Solutions of the two-dimensional diffusion equation, Trans. Am. Geophys.
Union 36, 395–405.
Scire, J.S., Robe, F.R., Strimaitis, M.E., and Yamartino, R.J. (1999), A Users’s Guide for the
CALPUFF Dispersion Model, Earth Tech, Inc., Concord, MA.
Scriven, R.A. and Fisher, B.A. (1975), The long range transport of airborne material and its
removal by deposition and washout-II. The effect of turbulent diffusion, Atmos. Environ.
9, 59–69.
Seinfeld, J.H. and Pandis, S.N. (1997), Atmospheric Chemistry and Physics, John Wiley &
Sons, New York.
Smith, F.B. (1957a), The diffusion of smoke from a continuous elevated point source into a
turbulent atmosphere, J. Fluid Mech. 2, 49–76.
Smith, F.B. (1957b), Convection-diffusion processes below a stable layer, Meteorological
Research Committee, N. 1048 and 10739.
Smith, M.E. (1968), Recommended Guide for the Prediction of the Dispersion of Airborne
Effl uents, American Society of Mechanical Engineers, New York.
Stern, A.C. (1976), Air Pollution, Academic Press, New York.
Tagliazucca, M., Nanni, T., and Tirabassi, T. (1985), An analytical dispersion model for sources
in the surface layer, Nuovo Cimento 8C, 771–781.
Taylor, G.I. (1921), Diffusion by continuous movement. Proc. Lond. Math. Soc. 2, 196–211.
Tirabassi, T. (1989), Analytical air pollution and diffusion models, Water Air Soil Pollut. 47,
19–24.
Tirabassi, T. (2003), Operational advanced air pollution modeling, PAGEOPH 160(1–2),
5–16.
© 2010 by Taylor and Francis Group, LLC
