4.7 Article

Global surveys of reservoirs and lakes from satellites and regional application to the Syrdarya river basin

Journal

ENVIRONMENTAL RESEARCH LETTERS
Volume 10, Issue 1, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1748-9326/10/1/015002

Keywords

reservoirs; remotesensing; transboundary river; Syrdarya

Funding

  1. Centre National d'Etudes Spatiales (CNES)

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Large reservoirs along rivers regulate downstream flows to generate hydropower but may also store water for irrigation and urban sectors. Reservoir management therefore becomes critical, particularly for transboundary basins, where coordination between riparian countries is needed. Reservoir management is even more important in semiarid regions where downstream water users may be totally reliant on upstream reservoir releases. If the water resources are shared between upstream and downstream countries, potentially opposite interests arise as is the case in the Syrdarya river in Central Asia. In this case study, remote sensing data (radar altimetry and optical imagery) are used to highlight the potential of satellite data to monitor water resources: water height, areal extent and storage variations. New results from 20 years of monitoring using satellites over the Syrdarya basin are presented. The accuracy of satellite data is 0.6 km(3) using a combination of MODIS data and satellite altimetry, and only 0.2 km(3) with Landsat images representing 2-4% of average annual reservoir volume variations in the reservoirs in the Syrdarya basin. With future missions such as Sentinel-3A (S3A), Sentinel-3B (S3B) and surface water and ocean topography (SWOT), significant improvement is expected. The SWOT mission's main payload (a radar interferometer in Ka band) will furthermore provide 2D maps of water height, reservoirs, lakes, rivers and floodplains, with a temporal resolution of 21 days. At the global scale, the SWOT mission will cover reservoirs with areal extents greater than 250 x 250m with 20 cm accuracy.

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