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The purpose of the module is to demonstrate how scientific information can make a big difference in proper understanding of the differences in WS impacts across projects and sites. The module presents scientific information in an easy-to-understand format. Concepts are explained and applied and i...


Sreedevi, P.D.Sarah, S.Ahmed, S.Pavelic, Paul[Module III: geohydrology context]Module III: geohydrology context

Responding to rainfall variability has always been one of the most critical risks facing farmers. It is also an integral part of the job of water managers, whether it be designing interventions for flood management, improving the reliability of water supply for irrigation or advising on prioritie...


Bird, JeremyRoy, SrabaniShah, TushaarAggarwal, Pramod K.Smakhtin, Vladimir U.Amarnath, GirirajAmarasinghe, Upali A.Pavelic, PaulMcCornick, Peter G.[Adapting to climate variability and change in India]Adapting to climate variability and change in India

The Ganges basin faces considerable spatial and temporal imbalance between water demand and availability. Lack of water storage infrastructure has led to this mismatch, wherein there are limited options to store flood water during the wet season and limited groundwater and surface water resources...


Chinnasamy, PennanMuthuwatta, Lal P.Eriyagama, NishadiPavelic, PaulLagudu, S.[Modeling the potential for floodwater recharge to offset groundwater depletion: a case study from the Ramganga basin, India]Modeling the potential for floodwater recharge to offset groundwater depletion: a case study from the Ramganga basin, India
Lacombe, GuillaumePavelic, PaulMcCartney, Matthew P.McCartney, Matthew P.Phommavong, K.Viossanges, Mathieu[Hydrological assessment of the Xe Champone and Beung Kiat Ngong wetlands [Final Project Report of the Climate Change Adaptation in Wetlands Areas (CAWA)]]Hydrological assessment of the Xe Champone and Beung Kiat Ngong wetlands [Final Project Report of the Climate Change Adaptation in Wetlands Areas (CAWA)]
Reddy, V. R.Rout, S. K.Pavelic, Paul[Underground taming of floods in the Ganges basin: technologies, institutions and policies]Underground taming of floods in the Ganges basin: technologies, institutions and policies
Shivakoti, B. R.Villholth, Karen G.Pavelic, PaulRoss, A.[Strategic use of groundwater-based solutions for drought risk reduction and climate resilience in Asia and beyond. Contributing paper to Global Assessment Report on disaster risk reduction (GAR 2019).]Strategic use of groundwater-based solutions for drought risk reduction and climate resilience in Asia and beyond. Contributing paper to Global Assessment Report on disaster risk reduction (GAR 2019).

Managed aquifer recharge (MAR) is the umbrella term for a range of technologies that enable the integrated use and management of surface water and groundwater to achieve a wide and growing range of social, economic and environmental benefits. The extent and variety of its applications and benefit...


Dillon, P.Pavelic, PaulNava, A.P.Weiping, W.[Advances in multi-stage planning and implementing managed aquifer recharge for integrated water management]Advances in multi-stage planning and implementing managed aquifer recharge for integrated water management

Target 6.4 of the recently adopted Sustainable Development Goals (SDGs) deals with the reduction of water scarcity. To monitor progress towards this target, two indicators are used: Indicator 6.4.1 measuring water use efficiency and 6.4.2 measuring the level of water stress (WS). This paper aims ...


Vanham, D.Hoekstra, A.Y.Wada, Y.Bouraoui, F.Roo, A. deMekonnen, M.M.Bund, W.J. van deBatelaan, O.Pavelic, PaulBastiaanssen, Wim G.M.Kummu, M.Rockström, JohanLiu, J.Bisselink, B.Ronco, P.Pistocchi, A.Bidoglio, G.[Physical water scarcity metrics for monitoring progress towards SDG target 6.4: An evaluation of indicator 6.4.2 “Level of water stress”]Physical water scarcity metrics for monitoring progress towards SDG target 6.4: An evaluation of indicator 6.4.2 “Level of water stress”

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