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title of the reference :  Evaporation of groundwater in the Sahara
Publication Date: 1986
Author : Menenti Massimo
Catalogue type : Livre
Catalogue reference : (DEU) Berl. Geowiss Abh. Reihe A. geol. Palaeontol. Evaporation of groundwater in the Sahara evaporation de l'eau souterraine au Sahara caractères régionaux et utilisation des données satèllitaires. regional character and application of satellite data. The relevance of groundwater losses by evaporation in the Sahara is stressed in relation with long term planning of groundwater extraction. The total evaporation losses have to be calculated for very large areas. The approach to obtain evaporation at the surface by determining the other terms of the surface energy balance is outlined. Examples of the relationship between latent heat flux and surface temperature are presented. It is demonstrated that physiographic units can be characterized in terms of their surface energy balance. The mapping of actual evaporation by satellite methods and ground measurements is shown. Workshop on hydrology : special Research Project Arid Areas at the Technical Univ, Berlin, N°20. 05.- 22. 05. 1985 milieu aride ; évaporation ; rabattement nappe ; énergie ; bilan ; flux chaleur ; température ; méthode satéllite ; nappe eau ; stockage eau ; bilan eau ; équation mathématique ; simulation numérique ; classification ; étude cas ; Tunisie : Libye ; Sahara ; Désert Libyen Menenti Massimo Hydrogéologie, Hydrologie, Environnement
Indexation decimale : Hydrogéologie, Hydrologie, Environnement
Keywords : milieu aride ; évaporation ; rabattement nappe ; énergie ; bilan ; flux chaleur ; température ; méthode satéllite ; nappe eau ; stockage eau ; bilan eau ; équation mathématique ; simulation numérique ; classification ; étude cas ; Tunisie : Libye ; Sahara ; Désert Libyen
Summary : The relevance of groundwater losses by evaporation in the Sahara is stressed in relation with long term planning of groundwater extraction. The total evaporation losses have to be calculated for very large areas. The approach to obtain evaporation at the surface by determining the other terms of the surface energy balance is outlined. Examples of the relationship between latent heat flux and surface temperature are presented. It is demonstrated that physiographic units can be characterized in terms of their surface energy balance. The mapping of actual evaporation by satellite methods and ground measurements is shown.
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