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      Integrated study of GRACE data derived interannual groundwater storage variability over water stressed Indian regions

      , , , ,
      Groundwater for Sustainable Development
      Elsevier BV

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          Potential impacts of a warming climate on water availability in snow-dominated regions.

          All currently available climate models predict a near-surface warming trend under the influence of rising levels of greenhouse gases in the atmosphere. In addition to the direct effects on climate--for example, on the frequency of heatwaves--this increase in surface temperatures has important consequences for the hydrological cycle, particularly in regions where water supply is currently dominated by melting snow or ice. In a warmer world, less winter precipitation falls as snow and the melting of winter snow occurs earlier in spring. Even without any changes in precipitation intensity, both of these effects lead to a shift in peak river runoff to winter and early spring, away from summer and autumn when demand is highest. Where storage capacities are not sufficient, much of the winter runoff will immediately be lost to the oceans. With more than one-sixth of the Earth's population relying on glaciers and seasonal snow packs for their water supply, the consequences of these hydrological changes for future water availability--predicted with high confidence and already diagnosed in some regions--are likely to be severe.
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            The gravity recovery and climate experiment: Mission overview and early results

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              Time variability of the Earth's gravity field: Hydrological and oceanic effects and their possible detection using GRACE

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                Author and article information

                Journal
                Groundwater for Sustainable Development
                Groundwater for Sustainable Development
                Elsevier BV
                2352801X
                April 2020
                April 2020
                : 10
                : 100376
                Article
                10.1016/j.gsd.2020.100376
                bb3c910f-cc3b-46f3-9f16-1d71a66616c7
                © 2020

                https://www.elsevier.com/tdm/userlicense/1.0/

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