8 Evaporation
185
fields using remote sensing and a reference field in an arid environment. Rem. Sens. Environ.
vol. 32 (2-3): 125-141
Kustas, W.P., E.M. Perry, P.C. Ooraiswamy and M.S. Moran, I 994a. Using satellite remote
sensing to extrapolate evapotranspiration estimates in time and space over a semiarid rangeland basin. Rem. Sens. Environ. vol. 49(3): 275-286
Kustas, W.P., M.S. Moran, K.S. Humes, 0.1. Stannard, PJ. Pinter Jr., L.E. Hipps,E. Swiatek,
and D.e. Goodrich, 1994b. Surface energy balance estimates at local and regional scales using optical remote sensing from an aircraft platform and atmospheric data collected over
semiarid rangelands .. Water Resources Res. Vol. 30(5):1241 - 1259
Kustas, W.P., L.E. Hipps and K.S. Humes, 1995. Calculation of basin-scale surface fluxes by combining remotely sensed data and atmospheric properties in a semiarid landscape. BoundaryLayer Meteorol. vol. 75: 105-124
Kustas, W.P. and J.M. Norman, 1996. Use of remote sensing for evapotranspiration monitoring
over land surfaces. In: A. Rango and J.C. Ritchie (eds.). Special issue: remote sensing applications to hydrology. Hydrological Sciences J. vol. 41 (4): 495-516
Lagouarde, J.P., K.J. McAneney and A.E. Green, 1996. Scintillometer measurements of sensible
heat flux over heterogeneous surfaces. In: J.B. Stewart et al. (eds), Scaling up in hydrology using remote sensing. Wiley, Chichester, UK: 147-160
Lhomme-JP; Monteny-B; Chehbouni-A; Troufleau-D Determination of sensible heat flux over
Sahelian fallow savannah using infra-red thermometry. Agric. For. Met. Vol. 68 (1-2): 93-105
Majumdar, TJ.,1991. Regional mapping of evapotranspiration rates using MOS-I VTIR data.
ITC Journal No.2: 86-89
Menenti, M., 1979. Defining relationships between surface characteristics and actual evaporation
rate. TELLUS Newsl. 15. JRC, Ispra: 21 p
Menenti, M., 1984. Physical aspects and determination of evaporation in deserts applying remote
sensing techniques. Report 10 (special issue). Inst. Land Water Manag. Res., Wageningen, The
Netherlands: 202 p
Menenti, M., A. Lorkeers and M. Visser, 1986. An application of thematic mapper data in Tunisia
ITC Joumal vol. I: 35-42
Menenti, M., W.G.M. Bastiaanssen, D. van Eick and M.H. Abd EI Karim, 1989. Linear relationships between surface reflectance and temperature and their application to map actual evaporation of groundwater. Adv. Space Res. 9{l): 165-176.
Menenti, M., 1993. Understanding land surface evapotranspiration with satellite multispectral
measurements. Adv. Space Res. vol. 13 (5): 89-100
Menenti, M. and BJ. Choudhury, 1993. Parametrization of land surface evapotranspiration using a
location dependent potential evapotranspiration and surface temperature range. in: HJ. Bolle et
al. (eds.) Exchange Processes at the Land Surface for a Range of Space and Time Scales. IAHS
Publication 212: 561-568
Menenti, M. and J.e. Ritchie, 1994. Estimation of effective aerodynamic roughness of Walnut
Gulch watershed with laser altimeter measurements. Water Res. Research (special issue
MONSOON '90) 30(5): 1329-1337.
Menenti, M., J.C. Ritchie, K.S. Humes, R.Parry, Y. Pachepsky, o. Gimenez and S. Leguizamon,
1996. Estimation of aerodynamic roughness at various spatial scales. In: J.8. Stewart et al. (eds),
Scaling up in hydrology using remote sensing. Wiley, Chichester, UK: 39-58.
Monteith, J.L. 1994. Fifty years of potential evaporation. Proc. Conf. Trinity College. Dublin, 7-9
sept.: 29-45
Moran, S.M., R.D. Jackson, L.H. Raymond, L.W. Gay and P.N. Slater, 1989. Mapping surface
energy balance components by combining Landsat Thematic Mapper and ground based meteorological data. Rem. Sens. Environ. vol. 30: 77-87
Moran, S.M. and R.DJackson, 1991. Assessing the spatial distribution of evapotranspiration using
remotely sensed inputs. J. Environ Qual. vol. 20: 725-737
185
fields using remote sensing and a reference field in an arid environment. Rem. Sens. Environ.
vol. 32 (2-3): 125-141
Kustas, W.P., E.M. Perry, P.C. Ooraiswamy and M.S. Moran, I 994a. Using satellite remote
sensing to extrapolate evapotranspiration estimates in time and space over a semiarid rangeland basin. Rem. Sens. Environ. vol. 49(3): 275-286
Kustas, W.P., M.S. Moran, K.S. Humes, 0.1. Stannard, PJ. Pinter Jr., L.E. Hipps,E. Swiatek,
and D.e. Goodrich, 1994b. Surface energy balance estimates at local and regional scales using optical remote sensing from an aircraft platform and atmospheric data collected over
semiarid rangelands .. Water Resources Res. Vol. 30(5):1241 - 1259
Kustas, W.P., L.E. Hipps and K.S. Humes, 1995. Calculation of basin-scale surface fluxes by combining remotely sensed data and atmospheric properties in a semiarid landscape. BoundaryLayer Meteorol. vol. 75: 105-124
Kustas, W.P. and J.M. Norman, 1996. Use of remote sensing for evapotranspiration monitoring
over land surfaces. In: A. Rango and J.C. Ritchie (eds.). Special issue: remote sensing applications to hydrology. Hydrological Sciences J. vol. 41 (4): 495-516
Lagouarde, J.P., K.J. McAneney and A.E. Green, 1996. Scintillometer measurements of sensible
heat flux over heterogeneous surfaces. In: J.B. Stewart et al. (eds), Scaling up in hydrology using remote sensing. Wiley, Chichester, UK: 147-160
Lhomme-JP; Monteny-B; Chehbouni-A; Troufleau-D Determination of sensible heat flux over
Sahelian fallow savannah using infra-red thermometry. Agric. For. Met. Vol. 68 (1-2): 93-105
Majumdar, TJ.,1991. Regional mapping of evapotranspiration rates using MOS-I VTIR data.
ITC Journal No.2: 86-89
Menenti, M., 1979. Defining relationships between surface characteristics and actual evaporation
rate. TELLUS Newsl. 15. JRC, Ispra: 21 p
Menenti, M., 1984. Physical aspects and determination of evaporation in deserts applying remote
sensing techniques. Report 10 (special issue). Inst. Land Water Manag. Res., Wageningen, The
Netherlands: 202 p
Menenti, M., A. Lorkeers and M. Visser, 1986. An application of thematic mapper data in Tunisia
ITC Joumal vol. I: 35-42
Menenti, M., W.G.M. Bastiaanssen, D. van Eick and M.H. Abd EI Karim, 1989. Linear relationships between surface reflectance and temperature and their application to map actual evaporation of groundwater. Adv. Space Res. 9{l): 165-176.
Menenti, M., 1993. Understanding land surface evapotranspiration with satellite multispectral
measurements. Adv. Space Res. vol. 13 (5): 89-100
Menenti, M. and BJ. Choudhury, 1993. Parametrization of land surface evapotranspiration using a
location dependent potential evapotranspiration and surface temperature range. in: HJ. Bolle et
al. (eds.) Exchange Processes at the Land Surface for a Range of Space and Time Scales. IAHS
Publication 212: 561-568
Menenti, M. and J.e. Ritchie, 1994. Estimation of effective aerodynamic roughness of Walnut
Gulch watershed with laser altimeter measurements. Water Res. Research (special issue
MONSOON '90) 30(5): 1329-1337.
Menenti, M., J.C. Ritchie, K.S. Humes, R.Parry, Y. Pachepsky, o. Gimenez and S. Leguizamon,
1996. Estimation of aerodynamic roughness at various spatial scales. In: J.8. Stewart et al. (eds),
Scaling up in hydrology using remote sensing. Wiley, Chichester, UK: 39-58.
Monteith, J.L. 1994. Fifty years of potential evaporation. Proc. Conf. Trinity College. Dublin, 7-9
sept.: 29-45
Moran, S.M., R.D. Jackson, L.H. Raymond, L.W. Gay and P.N. Slater, 1989. Mapping surface
energy balance components by combining Landsat Thematic Mapper and ground based meteorological data. Rem. Sens. Environ. vol. 30: 77-87
Moran, S.M. and R.DJackson, 1991. Assessing the spatial distribution of evapotranspiration using
remotely sensed inputs. J. Environ Qual. vol. 20: 725-737
