Articles | Volume 5, issue 6
https://doi.org/10.5194/gmd-5-1377-2012
https://doi.org/10.5194/gmd-5-1377-2012
Model description paper
 | 
09 Nov 2012
Model description paper |  | 09 Nov 2012

Inclusion of vegetation in the Town Energy Balance model for modelling urban green areas

A. Lemonsu, V. Masson, L. Shashua-Bar, E. Erell, and D. Pearlmutter

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Cited articles

Boone, A., Masson, V., Meyers, T., and Noilhan, J.: The influence of the inclusion of soil freezing on simulations by a soil-vegetation-atmosphere transfer scheme, J. Appl. Meteor., 9, 1544–1569, 2000.
Calvet, J.-C., Noilhan, J., Roujean, J.-L., Bessemoulin, P., Cabelguenne, M., Olioso, A., and Wigneron, J.-P.: An interactive vegetation SVAT model tested against data from six contrasting sites, Agr. Forest Meteorol., 92, 73–95, 1998.
Cuxart, J., Bougeault, P., and Redelsperger, J.-L.: A turbulence scheme allowing for mesoscale and large-eddy simulations, Q. J. Roy. Meteorol. Soc., 126, 1–30, 2000.
Dupont, S. and Mestayer, P.: Parameterization of the urban energy budget with the Submesoscale Soil Model, J. Appl. Meteorol. Climatol., 45, 1744–1765, 2006.
Essery, R., Best, M., Betts, R., Cox, P., and Taylor, C.: Explicit representation of subgrid heterogeneity in a GCM land surface scheme, J. Hydrol., 4, 530–543, 2003.