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Titlebook: Remote Sensing and Water Resources; A. Cazenave,N. Champollion,J. Chen Book 2016 Springer International Publishing Switzerland 2016 Remote

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On the Use of Hydrological Models and Satellite Data to Study the Water Budget of River Basins Affe such changes can be derived from fine scale in situ and satellite observations, used in combination with hydrological models. The latter need to account for hydrological changes caused by human activities to correctly estimate the actual water resource. In this study, we consider the catchment area
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The SWOT Mission and Its Capabilities for Land Hydrology,nt major components of the water cycle and deeply impact human societies. In situ networks are heterogeneously distributed in space, and many river basins and most lakes—especially in the developing world and in sparsely populated regions—remain unmonitored. Satellite remote sensing has provided use
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Toward a High-Resolution Monitoring of Continental Surface Water Extent and Dynamics, at Global Scaxtension of the temporal and spatial coverage was difficult, due to the limitation of the remote sensing technique [e.g., the interaction of the radiation with vegetation or cloud for visible observations or the temporal sampling with the synthetic aperture radar (SAR)]. The advantages and the limit
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Groundwater Storage Changes: Present Status from GRACE Observations,(TWS) changes with unprecedented accuracy. Combining GRACE-observed TWS changes and independent estimates of water change in soil and snow and surface reservoirs offers a means for estimating groundwater storage change. Since its launch in March 2002, GRACE time-variable gravity data have been succe
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