A Stable Iterative Procedure to Obtain Soil Surface Parameters and Fluxes from Satellite Data
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[1] M. Raffy,et al. An inverse problem occurring in remote sensing in the thermal infrared bands and its solutions , 1985 .
[2] J. C. Price,et al. Estimation of Regional Scale Evapotranspiration Through Analysis of Satellite Thermal-infrared Data , 1982, IEEE Transactions on Geoscience and Remote Sensing.
[3] J. C. Price. Thermal inertia mapping: A new view of the Earth , 1977 .
[4] B. Séguin,et al. Using midday surface temperature to estimate daily evaporation from satellite thermal IR data , 1983 .
[5] S. Idso,et al. Wheat canopy temperature: A practical tool for evaluating water requirements , 1977 .
[6] T. Carlson,et al. Satellite Estimation of the Surface Energy Balance, Moisture Availability and Thermal Inertia. , 1981 .
[7] J. C. Price. The potential of remotely sensed thermal infrared data to infer surface soil moisture and evaporation , 1980 .
[8] A. Abdellaoui,et al. Use of Meteosat for Mapping Thermal Inertia and Evapotranspiration over a Limited Region of Mali , 1986 .
[9] A. Rosema,et al. TELLUS: A combined surface temperature, soil moisture and evaporation mapping approach , 1978 .
[10] Frederick E. Boland,et al. Analysis of Urban-Rural Canopy Using a Surface Heat Flux/Temperature Model , 1978 .
[11] M. Raffy,et al. Comparison between the accuracies of a new discretization method and an improved Fourier method to evaluate heat transfers between soil and atmosphere , 1982 .