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dc.contributor.authorBastiaanssen, Wim G.M.
dc.contributor.authorChemin, Yann H.
dc.contributor.authorAhmad, Mobin-ud-Din
dc.contributor.authorAsif, S.
dc.identifier.citationBastiaanssen, W. G. M.; Chemin, Y.; Ahmad, Mobin-ud -Din; Asif, S. 1999. Patterns of crop evaporation in the Indus Basin, recognized from the NOAA-AVHRR Satellite. Paper presented at the 2nd Inter-Regional Conference on Environment-Water 99. 11p.
dc.descriptionPaper presented at the 2nd Inter-Regional Conference on Environment-Water 99
dc.description.abstractThe renewed interest for water conservation and the productivity of resources directly follows the increasing water scarcity at the global scale. Modern technological applications are essential to diagnose how water is used and determine who the water users in river basin systems are. The competition for water resources is most acutely experienced near river basin systems, where most citizens commonly live and work. Traditionally, irrigation water effectiveness is evaluated on the basis of flow rates through the main irrigation channels. This paper shows a method to compute consumptive use and soil water availability based on public domain satellite remote sensing data. The entire Indus River system is spatio-temporally modeled using a raster network based on National Oceanic Atmospheric Administration - Advanced Very High Resolution Radiometer (NOAA-AVHRR) data, at a spatial resolution of 1.1 km. The surface energy balance is the prime basis for calculations of evaporation and crop water stress, and thought to be more representative than canal discharge measurements to evaluate the management of all water resources.
dc.titlePatterns of crop evaporation in the Indus Basin, recognized from the NOAA-AVHRR Satellite
dc.typeConference Paper
cg.identifier.statusRestricted Access
cg.subject.iwmiCROP PRODUCTION
cg.subject.iwmiSATELLITE SURVEYS
cg.subject.iwmiREMOTE SENSING
cg.subject.iwmiSOIL WATER
cg.subject.iwmiWATER STRESS
cg.subject.iwmiIRRIGATION CANALS
cg.subject.iwmiRIVER BASINS
cg.subject.iwmiIRRIGATION WATER
cg.coverage.regionSOUTH ASIA

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