ZEF theme: Water resources (management)
2016
2016.
Income and irrigation water use efficiency under climate change: An application of spatial stochastic crop and water allocation model to Western Uzbekistan.
Climate Risk Management,
DOI: 10.1016/j.crm.2016.05.004
.
2016.
Integrated hydrologic modeling as a key for sustainable urban water resources planning.
Water Research,
: doi:10.1016/j.watres.2016.05.061
.
Further Information
2016.
ESTIMATION OF ACTUAL EVAPOTRANSPIRATION USING REMOTE SENSING BASED SURFACE ENERGY BALANCE SYSTEM AT THE DATA SCARCE KABUL RIVER BASIN OF AFGHANISTAN.
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[PDF | 550.26KB]
Further Information
Further Information
2016.
Assessing water ecosystem services for water resource management.
Environmental Science & Policy,
61
: 194-203
.
Further Information
2016.
Hydrological predictions for small ungauged watersheds in the Sudanian zone of the Volta basin in West Africa.
Journal of Hydrology: Regional Studies,
4
: 386-397
.
2016.
Mapping water provisioning services to support the water-food-energy-ecosystem nexus in the Danube river basin.
Ecosystem Services,
17
: 278-292
.
Further Information
2016.
Quantifying Uncertainties in Modeling Climate Change Impacts on Hydropower Production.
Climate,
34
: DOI: 10.3390/cli4030034
.
Further Information
2016.
Informing water policies with a residential water demand: The case of Serbia.
European Journal of Comparative Economics,
13 (2)
: 247-266
.
2016.
Urbanization and human health in urban India: institutional analysis of water-borne diseases in Ahmedabad.
Health Policy and Planning,
doi: 010.1093/heapol/czw039
: 1-11
.
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[PDF]
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Further Information
2016.
Tourism leads to wealth but increased vulnerability: a double-edged sword in Lijiang, South-West China.
Water International,
41(5)
: 682-697
.
Further Information
2016.
Managing waterlogging and soil salinity with a permanent raised bed and furrow system in coastal lowlands of humid tropics.
Agricultural Water Management,
168
: 58-67
.
Further Information
2016.
Land-use response to drought scenarios and water policy intervention in Lijiang, SW China.
Land Use Policy,
57(30)
: 377-387
.
2016.
Modeling land use change impacts on water resources in a tropical West African catchment (Dano, Burkina Faso).
Journal of Hydrology,
537
: 187-199
.
Further Information
2015
2015.
Biodiversity, wetland ecosystems and flood risks: Implications of hydropower expansion on the Magdalena River.
SEI/TNC/USAID factsheet
Further Information
2015.
Simulating groundwater dynamics using feflow-3d groundwater model under complex irrigation and drainage network of dryland ecosystems of central asia.
Irrigation and Drainage,
64 (2)
: 283-296
.
2015.
Simulating Groundwater Dynamics Using Feflow-3D Groundwater Model Under Complex Irrigation and Drainage Network of Dryland Ecosystems of Central Asia.
Irrigation and Drainage,
64 (2)
: 283-296
.
2015.
A water rights trading approach to increasing inflows to the Aral Sea.
Land Degradation & Development,
DOI: 10.1002/ldr.2394
.
Further Information
2015.
Ecosystem Services in the Water-Energy-Food Nexus.
Change and Adaptation in Socio-Ecological Systems,
2(1)
: 103–105
.
(Open Access)
2015.
How would the Rogun Dam affect water and energy scarcity in Central Asia?.
Water International,
40 (5-6)
: 856-876
.
(Open Access)
Further Information
2015.
Potential gains from water rights trading in the Aral Sea Basin.
Agricultural Water Management,
152
: 41-56
.
Further Information
2015.
Potential impacts of urban area expansion on groundwater level in the Gaza Strip: a spatial-temporal assessment.
Arabian Journal of Geosciences,
8 (12)
: 10565-10584
.
2015.
Quantifying the impact of urban area expansion on groundwater recharge and surface runoff.
Hydrological Sciences Journal,
DOI: 10.1080/02626667.2014.1000916
.
2015.
Quantifying the link between crop production and mined groundwater irrigation in China.
Science of The Total Environment,
511
: 161-175
.
2015.
Water balance simulation for resource evaluation at the catchment scale: application to the Nema (Sudano-Sahelian zone, Senegal).
Hydrological Sciences Journal,
60 (9)
: 1620-1630
.
Further Information
2015.
Hydrological responses to climate change in Mt. Elgon watersheds.
Journal of Hydrology: Regional Studies,
3
: 233-246
.
(Open Access)
Further Information
2015.
Water, Water Lords, and Caste: A Village Study from Gujarat, India.
Capitalism Nature Socialism,
DOI:10.1080/10455752.2015.1066835
.
Further Information
2015.
Non-invasive assessment of leaf water status using a dual-mode microwave resonator.
Plant Methods,
11 (1)
: DOI: 10.1186/s13007-015-0054-x
.
2015.
Metabolized-Water Breeding Diseases in Urban India - Sociospatiality of Water Problems and Health Burden in Ahmedabad City.
Journal of Industrial Ecology ,
19
: 93-103
.
2015.
Agents of institutional change: The contribution of new institutionalism in understanding water governance in India.
Environmental Science and Policy,
53
: 225-235
.
Further Information
2015.
Irrigation water management in Uzbekistan: analyzing the capacity of households to improve water use profitability.
In: Vlek, et. Al. (eds.):
Restructuring Land Allocation, Water Use and Agricultural Value Chains: Technologies, Policies and Practices for the Lower Amudarya Region.
ZEF.
25.
2015.
The Kherlen River, the Lifeline of the Eastern Steppe.
2015.
Earth Observations and Education for the Sustainable Implementation of the Nexus Approach.
Change and Adaptation in Socioecological Systems,
2
: 119-121
.
(Open Access)
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[PDF | 78.87KB]
2014
2014.
Development of small dams and their impact on livelihoods: Cases from northern Ghana.
African Journal of Agricultural Research,
9 (24)
: 1867-1877
.
(Open Access)
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[PDF]
2014.
Analysis of long term meteorological trends in the middle and lower Indus basin of Pakistan - A non-parametric statistical approach.
Global and Planetary Change ,
122
: 282-291
.
2014.
Effective management of soil salinity - revising leaching norms.
In: Lamers JPA, Khamzina A, Rudenko I, Vlek PLG (eds.):
Restructuring land allocation, water use and agricultural value chains. Technologies, policies and practices for the lower Amudarya region.
V&R unipress, Bonn University Press.
121-134.
2014.
A new technique to map groundwater recharge in irrigated areas using a SWAT model under changing climate.
Journal of Hydrology,
519
: 1368-1382
.
2014.
A GIS-based approach for up-scaling capillary rise from field to system level under soil–crop–groundwater mix.
Irrigation Science ,
32 (6)
: 449-458
.
Further Information
2014.
A GIS-based approach for up-scaling capillary rise from field to system level under soil–crop–groundwater mix.
Irrigation Science,
32 (6)
: 449-458
.
2014.
Integrating Input-Output Modeling with Multi-criteria Analysis to Assess Options for Sustainable Economic Transformation: The Case of Uzbekistan..
In: Bhaduri, A., J. Bogardi, J. Leentvaar, and S. Marx (eds.):
The Global Water System in the Anthropocene.
Springer Verlag.
229-245.
2014.
Coping with water scarcity in the irrigated lowlands of the lower Amudarya basin, Central Asia.
In: Lamers, J.P.A., Khamzina, A., Rudenko, I., Vlek, P.L.G. (eds.):
Restructuring land allocation, water use and agricultural value chains. Technologies, policies and practices for the lower Amudarya region.
V & R unipress. Bonn University Press.
199-216.