Kaimal, J. C., & Finnigan, J. J. (1994). Atmospheric Boundary Layer Flows (p. 289). Their
Structure and Measurement: Oxford University Press.
Kelliher, F. M., Leuning, R., Raupach, M. R., & Shulze, E. D. (1995). Maximum conductance for
evaporation from global vegetation types. Agricultural and Forest Meteorology, 73, 1–16.
Kelliher, F. M., Whitehead, D., Mcaneney, K. J., & Judd, M. J. (1990). Partitioning
evapotranspiration into tree and understorey components in two young Pinus radiata D. Don
Stands. Agricultural and Forest Meteorology, 50, 211–227.
Ladanai, S., & Vinterbäck, J. (2009). Global potential of sustainable biomass for energy, Report
013. SLU, Uppsala, p. 32.
Leclerc, M. Y., Beissner, K. C., Shaw, R. H., Den, H. G., & Neumann, H. H. (1990). The influence
of atmospheric stability on the budgets of reynolds stress and turbulent kinetic energy within
and above a deciduous forest. Journal of Applied Meteorology, 29, 916–933.
Lee, X., & Black, T. A. (1993a). Atmospheric turbulence within and above a Douglas fir stand.
Part I: statistical properties of the velocity field. Boundary Layer Meteorology, 64, 149–174.
Lee, X., & Black, T. A. (1993b). Atmospheric turbulence within and above a douglas fir stand.
Part II: eddy fluxes of sensible heat and water vapour. Boundary Layer Meteorology, 64,
369–389.
Lindroth, A. (1985). Seasonal and diurnal variation of energy budget components in coniferous
forests. Journal of Hydrology, 82, 1–15.
Mihailovic, D. T., Branislava, L., Rajkovic, B., & Arsenic, I. (1999). A roughness sublayer profile
above a non-uniform surface. Boundary Layer Meteorology, 93, 425–451.
Monteith, J. L., & Unsworth, M. H. (1991). Principles of environmental physics (2nd Ed.)
(p. 291), Edward Arnold.
Monteith, J. L., & Unsworth, M. H. (2013). Principles of environmental physics (4th ed., p. 403).
Oxford: Academic Press.
Oke, T. R. (1992). Boundary layer climates (2nd ed.), 435. Routledge.
Pereira, J. S., Tenhunen, J. D., Lange, O. L., Beyschlag, W., Meyer, A., e David, M. M. (1986).
Seasonal and diurnal patterns in leaf gas exchange of eucalyptus globulus labill. Trees growing
in Portugal. Canadian Journal of Forest Research, 16, 177–184.
Pereira, J. S., Mateus, J. A., Aires, L. M., Pita, G., Pio, C., David, J. S., et al. (2007). Net
ecosystem carbon exchange in three contrasting mediterranean ecosystems—the effect of
drought. Biogeosciences, 4, 791–802.
Pita, G., Gielen, B., Zona, D., Rodrigues, A., Rambal, S., Janssens, I. A., & Ceulemans, R. (2013).
Carbon and water vapor fluxes over four forests in two contrasting climatic zones. Agricultural
and Forest Meteorology, 180, 211–224.
Raupach, M. R., & Shaw, R. H. (1982). Averaging procedures for flow within vegetation canopies.
Boundary Layer Meteorology, 22, 79–90.
Raupach, M. R., & Thom, A. S. (1981). Turbulence in and above plant canopies. Annual Review of
Fluid Mechanics, 13, 97–129.
Reichstein, M., Tenhunen, J. D., Roupsard, O., Ourcival, J. M., Rambal, S., Miglietta, F.,
Peressotti, A., Pecchiari, M., Tirone e, G., Valentini, R. (2002). Severe drought effects on
ecosystem CO 2 and H 2 O fluxes at three mediterranean evergreen sites: Revision of current
hypotheses? Global Change Biology, 8(10), 999–1017.
Rodrigues, A. M. (2002). Fluxos de Momento, Massa e Energia na Camada Limite Atmosférica
em Montado de Sobro. Ph.D. Thesis (Environment, Energy profile) Instituto Superior Técnico,
U.T.L., Lisbon, 235 pp. [in portuguese].
Rodrigues, A. M., Oliveira, H. (2006). Sequestro de Carbono, Tendências Globais e Perspetivas do
Sector Florestal Português. Ingenium, II Série, 92, 68–71. [in portuguese]
Rodrigues, A., Pita, G., Mateus, J., Kurz-Besson, C., Casquilho, M., Cerasoli, S., et al. (2011).
Eight years of continuous carbon fluxes measurements in a portuguese eucalypt stand under
two main events: drought and felling. Agricultural and Forest Meteorology, 151, 493–507.
Shaw, R. C (1995). Statistical description of turbulence. Lecture 9, in: Advanced Short Course on
Biometeorology and Micrometeorology. Università di Sassari, Italia.
References
131
Structure and Measurement: Oxford University Press.
Kelliher, F. M., Leuning, R., Raupach, M. R., & Shulze, E. D. (1995). Maximum conductance for
evaporation from global vegetation types. Agricultural and Forest Meteorology, 73, 1–16.
Kelliher, F. M., Whitehead, D., Mcaneney, K. J., & Judd, M. J. (1990). Partitioning
evapotranspiration into tree and understorey components in two young Pinus radiata D. Don
Stands. Agricultural and Forest Meteorology, 50, 211–227.
Ladanai, S., & Vinterbäck, J. (2009). Global potential of sustainable biomass for energy, Report
013. SLU, Uppsala, p. 32.
Leclerc, M. Y., Beissner, K. C., Shaw, R. H., Den, H. G., & Neumann, H. H. (1990). The influence
of atmospheric stability on the budgets of reynolds stress and turbulent kinetic energy within
and above a deciduous forest. Journal of Applied Meteorology, 29, 916–933.
Lee, X., & Black, T. A. (1993a). Atmospheric turbulence within and above a Douglas fir stand.
Part I: statistical properties of the velocity field. Boundary Layer Meteorology, 64, 149–174.
Lee, X., & Black, T. A. (1993b). Atmospheric turbulence within and above a douglas fir stand.
Part II: eddy fluxes of sensible heat and water vapour. Boundary Layer Meteorology, 64,
369–389.
Lindroth, A. (1985). Seasonal and diurnal variation of energy budget components in coniferous
forests. Journal of Hydrology, 82, 1–15.
Mihailovic, D. T., Branislava, L., Rajkovic, B., & Arsenic, I. (1999). A roughness sublayer profile
above a non-uniform surface. Boundary Layer Meteorology, 93, 425–451.
Monteith, J. L., & Unsworth, M. H. (1991). Principles of environmental physics (2nd Ed.)
(p. 291), Edward Arnold.
Monteith, J. L., & Unsworth, M. H. (2013). Principles of environmental physics (4th ed., p. 403).
Oxford: Academic Press.
Oke, T. R. (1992). Boundary layer climates (2nd ed.), 435. Routledge.
Pereira, J. S., Tenhunen, J. D., Lange, O. L., Beyschlag, W., Meyer, A., e David, M. M. (1986).
Seasonal and diurnal patterns in leaf gas exchange of eucalyptus globulus labill. Trees growing
in Portugal. Canadian Journal of Forest Research, 16, 177–184.
Pereira, J. S., Mateus, J. A., Aires, L. M., Pita, G., Pio, C., David, J. S., et al. (2007). Net
ecosystem carbon exchange in three contrasting mediterranean ecosystems—the effect of
drought. Biogeosciences, 4, 791–802.
Pita, G., Gielen, B., Zona, D., Rodrigues, A., Rambal, S., Janssens, I. A., & Ceulemans, R. (2013).
Carbon and water vapor fluxes over four forests in two contrasting climatic zones. Agricultural
and Forest Meteorology, 180, 211–224.
Raupach, M. R., & Shaw, R. H. (1982). Averaging procedures for flow within vegetation canopies.
Boundary Layer Meteorology, 22, 79–90.
Raupach, M. R., & Thom, A. S. (1981). Turbulence in and above plant canopies. Annual Review of
Fluid Mechanics, 13, 97–129.
Reichstein, M., Tenhunen, J. D., Roupsard, O., Ourcival, J. M., Rambal, S., Miglietta, F.,
Peressotti, A., Pecchiari, M., Tirone e, G., Valentini, R. (2002). Severe drought effects on
ecosystem CO 2 and H 2 O fluxes at three mediterranean evergreen sites: Revision of current
hypotheses? Global Change Biology, 8(10), 999–1017.
Rodrigues, A. M. (2002). Fluxos de Momento, Massa e Energia na Camada Limite Atmosférica
em Montado de Sobro. Ph.D. Thesis (Environment, Energy profile) Instituto Superior Técnico,
U.T.L., Lisbon, 235 pp. [in portuguese].
Rodrigues, A. M., Oliveira, H. (2006). Sequestro de Carbono, Tendências Globais e Perspetivas do
Sector Florestal Português. Ingenium, II Série, 92, 68–71. [in portuguese]
Rodrigues, A., Pita, G., Mateus, J., Kurz-Besson, C., Casquilho, M., Cerasoli, S., et al. (2011).
Eight years of continuous carbon fluxes measurements in a portuguese eucalypt stand under
two main events: drought and felling. Agricultural and Forest Meteorology, 151, 493–507.
Shaw, R. C (1995). Statistical description of turbulence. Lecture 9, in: Advanced Short Course on
Biometeorology and Micrometeorology. Università di Sassari, Italia.
References
131
