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    Boundary of the Jordan River Basin obtained from HydroBASINS (Lerner and Grill, 2013).

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    Saturated soil water content calculated over the Litani River Basin area in Lebanon. The dataset is derived from the High Resolution Soil Map of Hydraulic Properties (HiHydroSoils v1.0).

  • Categories  

    Boundary of the Litani River Basin obtained from HydroBASINS (Lerner and Grill, 2013).

  • Categories  

    Saturated soil water content calculated over the Jordan River Basin area in Jordan. The dataset is derived from the High Resolution Soil Map of Hydraulic Properties (HiHydroSoils v1.0).

  • The Transpiration (T) data component is the actual transpiration of the vegetation canopy. The value of each pixel represents the total annual transpiration for that specific year. The data is provided in near real time from January 2009 to present.

  • Net Primary Production (NPP) is a fundamental characteristic of an ecosystem, expressing the conversion of carbon dioxide into biomass driven by photosynthesis. The pixel value represents the NPP for that specific month. The data is provided in near real time from January 2015 to present.

  • The actual EvapoTranspiration and Interception (ETIa) is the sum of the soil evaporation (E), canopy transpiration (T), and evaporation from rainfall intercepted by leaves (I). The value of each pixel represents the ETIa in a given year. The data is provided in near real time from January 2009 to present.

  • The Transpiration (T) data component is the actual transpiration of the vegetation canopy. The value of each pixel represents the total annual transpiration for that specific year. The data is provided in near real time from January 2009 to present.

  • The actual EvapoTranspiration and Interception (ETIa) is the sum of the soil evaporation (E), canopy transpiration (T), and evaporation from rainfall intercepted by leaves (I). The value of each pixel represents the ETIa in a given year. The data is provided in near real time from January 2015 to present.

  • The Interception (I) data component (dekadal, in mm/day) represents the evaporation of intercepted rainfall from the vegetation canopy. Interception is the process where rainfall is captured by the leaves. Part of this captured rainfall will evaporate again. The value of each pixel represents the average daily evaporated interception for that specific dekad. The data is provided in near real time from January 2009 to present.