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EN
Many issues in the water, energy and agricultural sector are in fact crosscutting issues, which can only be solved by a nexus approach. A nexus approach means that management solutions account for synergies and tradeoffs between the sectors. Critical issues emerging across the three sectors ask for different policies at different governance levels. However, at each level of policy making the impact at local level should be an important point of reference. In line with this, the case of the Aral Sea Basin in Central Asia exemplifies how international energy politics affect local farmers’ access to irrigation water. Moreover, a comparative study of three states in India shows that local differences in the implementation of the nexus approach can lead to different outcomes in terms of groundwater and electricity use for agriculture. These two examples underline that to implement a nexus approach; the local perspective should not be overlooked, even when policies are designed at higher governance levels.
EN
With climatic changes, access to freshwater resources becomes more limited. Correspondingly, water monitoring methods in sensitive or critical areas in terms of groundwater amount are becoming increasingly important. The monitoring of the water levels in these regions, using appropriate methods and data sets, is highly effective in preventing possible future water crises. This paper aims estimated water storage changes with available tools and data in southeastern Anatolia, Turkey, where hydroclimatological studies are scarce due to limited observations. Data obtained from the Gravity Recovery and Climate Experiment satellite mission and the Global Land Data Assimilation System were used for the analysis of water storage changes in the study area. The results demonstrate that water storage shows a downward trend in all subareas, particularly in high-elevation regions. In addition, climatic changes have both short- and long-term impacts on water storage. Climatic variables (increasing temperature and decreasing precipitation) showed the highest correlation with water storage at 2-month lags. The monitoring of water storage is crucial for the region, and our results confirm the major role of such monitoring in decision-making processes and water resource management.
EN
The PSH Database Integrator as a sophisticated tool for groundwater management answers the needs of the Polish Hydrogeological Survey. At the first stage it is a functional integration system for all hydrogeological databases existing in the Polish Geological Institute such as those of Groundwater Monitoring, HYDRO Bank and Hydrogeological Map of Poland. The final stage of all kind of analysis involves cartographical representation of the results. Using the PSH Database Integrator in this process reduces labour input and time as well as helps keeping standards. Next stage in the system development will enable internet access for users.
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