128
Air Pollution and Turbulence: Modeling and Applications
Soares, P. M. M., P. M. A. Miranda, A. P. Siebesma, and J. Teixeira. 2004. An eddy-diffusivity/
mass-fl ux turbulence closure for dry and shallow cumulus convection. Q. J. R. Meteorol.
Soc. 130:3365–3384.
Sommeria, G., 1976. Three-dimensional simulation of turbulent processes in an undisturbed
trade-wind boundary layer. J. Atmos. Sci. 33:216–241.
Sommeria, G. and J. W. Deardorff. 1977. Subgrid-scale condensation in models of nonprecipitating clouds. J. Atmos. Sci. 34:344–355.
Sorbjan, Z. 1996a. Numerical study of penetrative and “solid lid” nonpenetrative convective
boundary layers. J. Atmos. Sci. 53:101–112.
Sorbjan, Z. 1996b. Effects caused by varying the strength of the capping inversion based on a
large eddy simulation model of the shear-free convective boundary layer. J. Atmos. Sci.
53:2015–2024.
Squires, P. and J. S. Turner. 1962. An entraining jet model for cumulonimbus updrafts. Tellus.
14:422–434.
Sullivan, P. P., C.-H. Moeng, B. Stevens, D. H. Lenschow, and S. D. Mayor. 1998. Structure
of the entrainment zone capping the convective atmospheric boundary layer. J. Atmos.
Sci. 55:3042–3064.
Sundqvist, H. 1988. Parameterization of condensation and associated clouds in models for
weather prediction and general circulation simulation. Physically Based Modelling and
Simulation of Climate and Climate Change, ed. M. E. Schlesinger. Kluwer, Dordrecht,
the Netherlands, pp. 433–461.
Stevens, B., W. R. Cotton, G. Feingold, and C.-H. Moeng. 1998. Large-eddy simulations of
strongly precipitating, shallow, stratocumulus-topped boundary layers. J. Atmos. Sci.
55:3616–3638.
Stevens, B., A. S. Ackerman, B. A. Albrecht, A. R. Brown, A. Chlond, J. Cuxart, P. G.
Duynkerke, D. C. et al. 2001. Simulations of tradewind cumuli under a strong inversion.
J. Atmos. Sci. 58:1870–1891.
Stull, R. B. 1976. Mixed layer depth model based on turbulent energetics. J. Atmos. Sci.
33:1260–1267.
Stull, R. B. 1984. Transilient turbulence theory. Part 1: The concept of eddy mixing across
fi nite distances. J. Atmos. Sci. 41:3351–3367.
Stull, R. B. 1988. An Introduction to Boundary Layer Meteorology. Kluwer Academic
Publishers, Boston, MA, 666pp.
Stull, R. B. 1993. Review of transilient turbulence theory and non-local mixing. Bound. Layer
Meteorol. 62:21–96.
Stull, R. B. and A. G. M. Driedonks. 1987. Applications of the transilient turbulence parameterization to atmospheric boundary-layer simulations. Bound. Layer Meteorol.
40:209–239.
Teixeira, J. 2001. Cloud fraction and relative humidity in a prognostic cloud fraction scheme.
Monthly Weather Review, 129, 1750–1753.
Teixeira, J. and S. Cheinet. 2002. Eddy-diffusivity and convective boundary layers: A new
mixing length formulation. In 15th Symposium on Boundary Layer and Turbulence,
Wageningen, NL, pp. 55–58. American Meteorological Society.
Teixeira, J. and S. Cheinet. 2004. A simple mixing length formulation for the eddy-diffusivity
parameterization of dry convection. Bound. Layer Meteorol. 110:435–453.
Teixeira, J. and T. F. Hogan. 2002. Boundary layer clouds in a global atmospheric model:
Simple cloud cover parameterization. J. Climate. 15:1261–1276.
Teixeira, J. and P. M. A. Miranda. 2001. Fog prediction at Lisbon airport using a one-dimensional boundary layer model. Meteorological Applications, 8:497–505.
Tennekes, H. 1973. Model for dynamics of inversion above a convective boundary-layer.
J. Atmos. Sci. 30:558–567.
© 2010 by Taylor and Francis Group, LLC
Air Pollution and Turbulence: Modeling and Applications
Soares, P. M. M., P. M. A. Miranda, A. P. Siebesma, and J. Teixeira. 2004. An eddy-diffusivity/
mass-fl ux turbulence closure for dry and shallow cumulus convection. Q. J. R. Meteorol.
Soc. 130:3365–3384.
Sommeria, G., 1976. Three-dimensional simulation of turbulent processes in an undisturbed
trade-wind boundary layer. J. Atmos. Sci. 33:216–241.
Sommeria, G. and J. W. Deardorff. 1977. Subgrid-scale condensation in models of nonprecipitating clouds. J. Atmos. Sci. 34:344–355.
Sorbjan, Z. 1996a. Numerical study of penetrative and “solid lid” nonpenetrative convective
boundary layers. J. Atmos. Sci. 53:101–112.
Sorbjan, Z. 1996b. Effects caused by varying the strength of the capping inversion based on a
large eddy simulation model of the shear-free convective boundary layer. J. Atmos. Sci.
53:2015–2024.
Squires, P. and J. S. Turner. 1962. An entraining jet model for cumulonimbus updrafts. Tellus.
14:422–434.
Sullivan, P. P., C.-H. Moeng, B. Stevens, D. H. Lenschow, and S. D. Mayor. 1998. Structure
of the entrainment zone capping the convective atmospheric boundary layer. J. Atmos.
Sci. 55:3042–3064.
Sundqvist, H. 1988. Parameterization of condensation and associated clouds in models for
weather prediction and general circulation simulation. Physically Based Modelling and
Simulation of Climate and Climate Change, ed. M. E. Schlesinger. Kluwer, Dordrecht,
the Netherlands, pp. 433–461.
Stevens, B., W. R. Cotton, G. Feingold, and C.-H. Moeng. 1998. Large-eddy simulations of
strongly precipitating, shallow, stratocumulus-topped boundary layers. J. Atmos. Sci.
55:3616–3638.
Stevens, B., A. S. Ackerman, B. A. Albrecht, A. R. Brown, A. Chlond, J. Cuxart, P. G.
Duynkerke, D. C. et al. 2001. Simulations of tradewind cumuli under a strong inversion.
J. Atmos. Sci. 58:1870–1891.
Stull, R. B. 1976. Mixed layer depth model based on turbulent energetics. J. Atmos. Sci.
33:1260–1267.
Stull, R. B. 1984. Transilient turbulence theory. Part 1: The concept of eddy mixing across
fi nite distances. J. Atmos. Sci. 41:3351–3367.
Stull, R. B. 1988. An Introduction to Boundary Layer Meteorology. Kluwer Academic
Publishers, Boston, MA, 666pp.
Stull, R. B. 1993. Review of transilient turbulence theory and non-local mixing. Bound. Layer
Meteorol. 62:21–96.
Stull, R. B. and A. G. M. Driedonks. 1987. Applications of the transilient turbulence parameterization to atmospheric boundary-layer simulations. Bound. Layer Meteorol.
40:209–239.
Teixeira, J. 2001. Cloud fraction and relative humidity in a prognostic cloud fraction scheme.
Monthly Weather Review, 129, 1750–1753.
Teixeira, J. and S. Cheinet. 2002. Eddy-diffusivity and convective boundary layers: A new
mixing length formulation. In 15th Symposium on Boundary Layer and Turbulence,
Wageningen, NL, pp. 55–58. American Meteorological Society.
Teixeira, J. and S. Cheinet. 2004. A simple mixing length formulation for the eddy-diffusivity
parameterization of dry convection. Bound. Layer Meteorol. 110:435–453.
Teixeira, J. and T. F. Hogan. 2002. Boundary layer clouds in a global atmospheric model:
Simple cloud cover parameterization. J. Climate. 15:1261–1276.
Teixeira, J. and P. M. A. Miranda. 2001. Fog prediction at Lisbon airport using a one-dimensional boundary layer model. Meteorological Applications, 8:497–505.
Tennekes, H. 1973. Model for dynamics of inversion above a convective boundary-layer.
J. Atmos. Sci. 30:558–567.
© 2010 by Taylor and Francis Group, LLC
