8 Evaporation
187
Sato, N., PJ. Sellers, E.K. Randall, J. Schneider, J. Shukla, 1.L. Kinter III, Y. T. Hou and E. Albertazzi, 1989. Effects of implementing the simple biosphere model (SiB) in a general circulation
model. J. Atmos. Sci. vol. 46 (18): 2757-2782
Saxton, K.E., H.PJohnson and R.H. Shaw, 1974. Modeling evapotranspiration and soil moisture.
Trans. ASAE vo1.17: 673-677
Schuepp, P.H., R.L. Desjardins, 1.1. Macpherson, 1.B. Boisvert and L.B. Austin, 1989. Interpretation of airborne estimates of evapotranspiration. IAHS Publication. No. 177: 185-196
Schubert, S.D., J. Pfaendtner and R. Rood, 1993. An assimilated data set for Earth science applications. Bull. Am. Meteorol. Soc. Vol. 74: 2331-2342
Seevers, P.M., and R.W. Ottmann, 1994. Evapotranspiration estimation using a normalized difference vegetation index transformation of satellite data. Hydrol. Sci. J. vol. 39 (4): 333-345
Segal, M. and R.W. Arritt, 1992. Non-classical mesoscale circulations caused by surface sensible
heat-flux gradients. Bull. Amer. Meteorol. Soc. Vol. 73: 1593-1604
Seguin, B., 1981. Bioclimatological aspects of crop production. In: A.Berg (ed.) Application of
remote sensing to agricultural production forecasting. A.A. Balkema, Rotterdam, The Netherlands: 33-45
Seguin, B. and B. Itier, 1983. Using midday surface temperature to estimate daily evaporation ITom
satellite thermallR data. Int. J. Rem. Sens. vol. 4: 371-383
Seguin, B., 1989.Use of surface temperature in agrometeorology. in: F. Toselli (ed.) Applications
of remote sensing to agrometeorology. Kluwer Academic Publishers, Dordrecht, The Netherlands: 221-240
Seguin, B., J.P. Lagouarde and M. Savane, 1991. The assessment of regional crop water conditions from meteorological satellite thermal infrared data. Rem. Sens. Envir. Vol. 35 (2-3):
141-148
Shukla, J. and Y. Mintz, 1982. Influence ofland surface evapotranspiration on the Earth's climate.
Science vol. 215: 1498-150 I
Smith, R.C.G. and BJ. Choudhury, 1991. Analysis of normalized difference and surface temperature observations over southeastern Australia. Int. 1. Rem. Sens. Vol. 12: 2021-2044
Soer, GJ .R., 1977. The TERGRA model - A mathematical model for the simulation of the daily
behaviour of crop surface temperature and actual evapotranspiration. NIWARS Publ. 46. Delft,
The Netherlands: 44 p
Soer, GJ.R., 1980. Estimation of regional evapotranspiration and soil moisture conditions using
remotely sensed crop surface temperature. Rem. Sens. Envir. Vol. 9: 27-45
Starr, V.P. and J.P. Peixoto, 1958. On the global balance of water vapour and the hydrology of deserts. Tellus vol. 10: 189-194
Stone, L.R., E.T. Kanemasu and M.L. Horton, 1975. Grain sorghum canopy temperature as influenced by clouds. Rem. Sens. Envir. vol. 4 (2): 177-181
Susskind, 1., 1993. Water vapour and temperature. In: RJ. Gurney et al. (Eds.). Atlas of satellite
observations related to global change. Cambridge Univ. Press, New York N.Y.: 89-128
Taconet, O. and D. Vidal-Madjar, 1988. Application of a flux algorithm to a field-satellite campaign over vegetated area. Rem. Sens. Envir. Vol.26 (3): 227-239.
Taconet 0., A. Olioso, M. Ben-Mehrez and N. Brisson, 1995. Seasonal estimation of evaporation and stomatal conductance over a soybean field using surface IR temperatures. Agric. For.
Met. Vol. 73 (3-4): 321-337
Thornthwaite, C.W. 1944. Report of the Committee on Transpiration and Evaporation. Trans. AGU
vol. 25: 683-693
Thornthwaite, C.W., 1948. An approach towards a rational classification of climate. Geogr. Rev.
vol. 38: 55-94
Thunnissen, H.A.M. and GJ.A. Nieuwenhuis, 1990. A simplified method to estimate 24-h evapotranspiration ITom thermal infrared data. Rem. Sens. Envir. Vol. 31: 211-225
187
Sato, N., PJ. Sellers, E.K. Randall, J. Schneider, J. Shukla, 1.L. Kinter III, Y. T. Hou and E. Albertazzi, 1989. Effects of implementing the simple biosphere model (SiB) in a general circulation
model. J. Atmos. Sci. vol. 46 (18): 2757-2782
Saxton, K.E., H.PJohnson and R.H. Shaw, 1974. Modeling evapotranspiration and soil moisture.
Trans. ASAE vo1.17: 673-677
Schuepp, P.H., R.L. Desjardins, 1.1. Macpherson, 1.B. Boisvert and L.B. Austin, 1989. Interpretation of airborne estimates of evapotranspiration. IAHS Publication. No. 177: 185-196
Schubert, S.D., J. Pfaendtner and R. Rood, 1993. An assimilated data set for Earth science applications. Bull. Am. Meteorol. Soc. Vol. 74: 2331-2342
Seevers, P.M., and R.W. Ottmann, 1994. Evapotranspiration estimation using a normalized difference vegetation index transformation of satellite data. Hydrol. Sci. J. vol. 39 (4): 333-345
Segal, M. and R.W. Arritt, 1992. Non-classical mesoscale circulations caused by surface sensible
heat-flux gradients. Bull. Amer. Meteorol. Soc. Vol. 73: 1593-1604
Seguin, B., 1981. Bioclimatological aspects of crop production. In: A.Berg (ed.) Application of
remote sensing to agricultural production forecasting. A.A. Balkema, Rotterdam, The Netherlands: 33-45
Seguin, B. and B. Itier, 1983. Using midday surface temperature to estimate daily evaporation ITom
satellite thermallR data. Int. J. Rem. Sens. vol. 4: 371-383
Seguin, B., 1989.Use of surface temperature in agrometeorology. in: F. Toselli (ed.) Applications
of remote sensing to agrometeorology. Kluwer Academic Publishers, Dordrecht, The Netherlands: 221-240
Seguin, B., J.P. Lagouarde and M. Savane, 1991. The assessment of regional crop water conditions from meteorological satellite thermal infrared data. Rem. Sens. Envir. Vol. 35 (2-3):
141-148
Shukla, J. and Y. Mintz, 1982. Influence ofland surface evapotranspiration on the Earth's climate.
Science vol. 215: 1498-150 I
Smith, R.C.G. and BJ. Choudhury, 1991. Analysis of normalized difference and surface temperature observations over southeastern Australia. Int. 1. Rem. Sens. Vol. 12: 2021-2044
Soer, GJ .R., 1977. The TERGRA model - A mathematical model for the simulation of the daily
behaviour of crop surface temperature and actual evapotranspiration. NIWARS Publ. 46. Delft,
The Netherlands: 44 p
Soer, GJ.R., 1980. Estimation of regional evapotranspiration and soil moisture conditions using
remotely sensed crop surface temperature. Rem. Sens. Envir. Vol. 9: 27-45
Starr, V.P. and J.P. Peixoto, 1958. On the global balance of water vapour and the hydrology of deserts. Tellus vol. 10: 189-194
Stone, L.R., E.T. Kanemasu and M.L. Horton, 1975. Grain sorghum canopy temperature as influenced by clouds. Rem. Sens. Envir. vol. 4 (2): 177-181
Susskind, 1., 1993. Water vapour and temperature. In: RJ. Gurney et al. (Eds.). Atlas of satellite
observations related to global change. Cambridge Univ. Press, New York N.Y.: 89-128
Taconet, O. and D. Vidal-Madjar, 1988. Application of a flux algorithm to a field-satellite campaign over vegetated area. Rem. Sens. Envir. Vol.26 (3): 227-239.
Taconet 0., A. Olioso, M. Ben-Mehrez and N. Brisson, 1995. Seasonal estimation of evaporation and stomatal conductance over a soybean field using surface IR temperatures. Agric. For.
Met. Vol. 73 (3-4): 321-337
Thornthwaite, C.W. 1944. Report of the Committee on Transpiration and Evaporation. Trans. AGU
vol. 25: 683-693
Thornthwaite, C.W., 1948. An approach towards a rational classification of climate. Geogr. Rev.
vol. 38: 55-94
Thunnissen, H.A.M. and GJ.A. Nieuwenhuis, 1990. A simplified method to estimate 24-h evapotranspiration ITom thermal infrared data. Rem. Sens. Envir. Vol. 31: 211-225
