Nura district
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The Relative Water Deficit dataset represents the water deficit per pixel computed as 1 minus the ratio of ETa over ETx (max crop ET) over the main growing season (May to October) 2019. The RWD is computed for the irrigated command areas N1 identified by the ADB project in Nura district, in the Karaghandy region of Kazakhstan.
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The Relative Water Deficit dataset represents the water deficit per pixel computed as 1 minus the ratio of ETa over ETx (max crop ET) over the main growing season (May to October) 2019. The RWD is computed for the irrigated command areas N3 identified by the ADB project in Nura district, in the Karaghandy region of Kazakhstan.
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The layer represents the study area boundary which is the irrigated command areas identified by the ADB project in the Nura district, Karaghandy province of Kazakhstan.
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The Relative Water Deficit dataset represents the water deficit per pixel computed as 1 minus the ratio of ETa over ETx (max crop ET) over the main growing season (May to October) 2019. The RWD is computed for the irrigated command areas N2 identified by the ADB project in Nura district, in the Karaghandy region of Kazakhstan.
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The Gross Biomass Water Productivity (GBWP) dataset is estimated from seasonal AGBP and ETa derived from Landsat 8 OLI and meteo data, averaged over main growing season (May to October) 2019. The GBWP is computed for the irrigated command areas N3 identified by the ADB project in Nura district, in the Karaghandy region of Kazakhstan.
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The Gross Biomass Water Productivity (GBWP) dataset is estimated from seasonal AGBP and ETa derived from Landsat 8 OLI and meteo data, averaged over main growing season (May to October) 2019. The GBWP is computed for the irrigated command areas N1 identified by the ADB project in Nura district, in the Karaghandy region of Kazakhstan.
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The Gross Biomass Water Productivity (GBWP) dataset is estimated from seasonal AGBP and ETa derived from Landsat 8 OLI and meteo data, averaged over main growing season (May to October) 2019. The GBWP is computed for the irrigated command areas N2 identified by the ADB project in Nura district, in the Karaghandy region of Kazakhstan.
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The Above Ground Biomass Production (AGBP) is estimated from remote sensing energy balance model (SEBAL) on Landsat 8 OLI and meteo data, aggregated over main growing season (May to October) 2019. The AGBP is computed for the irrigated command areas N1 identified by the ADB project in Nura district, in the Karaghandy region of Kazakhstan.
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The Actual Evapotranspiration is estimated from remote sensing energy balance model (SEBAL) on Landsat 8 OLI and meteo data, aggregated over main growing season (May to October) 2019. The Actual Evapotranspiration is computed for the irrigated command areas N3 identified by the ADB project in Nura district, in the Karaghandy province of Kazakhstan.
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The Actual Evapotranspiration is estimated from remote sensing energy balance model (SEBAL) on Landsat 8 OLI and meteo data, aggregated over main growing season (May to October) 2019. The Actual Evapotranspiration is computed for the irrigated command areas N1 identified by the ADB project in Nura district, in the Karaghandy province of Kazakhstan.