Dynamic modeling of the Ganga river system: impacts of future climate and socio-economic change on flows and nitrogen fluxes in India and Bangladesh.

@article{Whitehead2015DynamicMO,
  title={Dynamic modeling of the Ganga river system: impacts of future climate and socio-economic change on flows and nitrogen fluxes in India and Bangladesh.},
  author={Paul G. Whitehead and Sananda Sarkar and L. Jin and Martyn N. Futter and John Caesar and Emily J. Barbour and Daniel Butterfield and Rajiv Sinha and Robert J. Nicholls and Craig W. Hutton and H. Leckie},
  journal={Environmental science. Processes \& impacts},
  year={2015},
  volume={17 6},
  pages={
          1082-97
        }
}
This study investigates the potential impacts of future climate and socio-economic change on the flow and nitrogen fluxes of the Ganga river system. This is the first basin scale water quality study for the Ganga considering climate change at 25 km resolution together with socio-economic scenarios. The revised dynamic, process-based INCA model was used to simulate hydrology and water quality within the complex multi-branched river basins. All climate realizations utilized in the study predict… 
Impacts of climate change and socio-economic scenarios on flow and water quality of the Ganges, Brahmaputra and Meghna (GBM) river systems: low flow and flood statistics.
TLDR
Assessment of future changes in flow and water quality utilising a modelling approach as a means of assessment in a very complex system indicates a significant increase in monsoon flows under the future climates, with enhanced flood potential.
Assessing the impacts of climate change and socio-economic changes on flow and phosphorus flux in the Ganga river system.
TLDR
A multi-branch version of INCA Phosphorus (INCA-P) model is applied to the entire Ganga river system to quantify the impacts from a changing climate, population growth, additional agricultural land, pollution control and water transfers for 2041-2060 and 2080-2099.
Modeling impacts of climate and land use change on streamflow, nitrate, and ammonium in the Kor River, southwest of Iran
This study examined the separate and combined impacts of future changes in climate and land use on streamflow, nitrate and ammonium in the Kor River Basin, southwest of Iran, using the
A first look at the influence of anthropogenic climate change on the future delivery of fluvial sediment to the Ganges-Brahmaputra-Meghna delta.
TLDR
The new data obtained in this study offer the first estimate of whether and how anthropogenic climate change may affect the delivery of fluvial sediment to the Ganges-Brahmaputra-Meghna mega-delta, informing assessments of the future sustainability and resilience of one of the world's most vulnerable mega-Deltas.
Assessing the impacts of climate and land use change on streamflow, water quality and suspended sediment in the Kor River Basin, Southwest of Iran
This research addressed the separate and combined impacts of climate and land use change on streamflow, suspended sediment and water quality in the Kor River Basin, Southwest of Iran, using
Assessment of long-term hydrogeological changes and plausible solutions to manage hydrological extremes in the transnational Ganga river basin
The Ganga is an international transboundary river that flows across three major riparian countries: India, Nepal, and Bangladesh, where India shares a significant proportion of the total basin
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References

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Impacts of climate change and socio-economic scenarios on flow and water quality of the Ganges, Brahmaputra and Meghna (GBM) river systems: low flow and flood statistics.
TLDR
Assessment of future changes in flow and water quality utilising a modelling approach as a means of assessment in a very complex system indicates a significant increase in monsoon flows under the future climates, with enhanced flood potential.
Assessing the impacts of climate change and socio-economic changes on flow and phosphorus flux in the Ganga river system.
TLDR
A multi-branch version of INCA Phosphorus (INCA-P) model is applied to the entire Ganga river system to quantify the impacts from a changing climate, population growth, additional agricultural land, pollution control and water transfers for 2041-2060 and 2080-2099.
Implications of climate change for water resources development in the Ganges basin
This paper presents the first basin-wide assessment of the potential impact of climate change on the hydrology and production of the Ganges system, undertaken as part of the World Bank’s Ganges
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This study assessed the variability of flows under present and 'naturalized' basin conditions in the Upper Ganges Basin (UGB). Furthermore, the PRECIS regional climate model (RCM) was used to
Exploring the impacts of climate change on water resources - regional impacts at a regional scale: Bangladesh
Bangladesh is located at the confluence of three major river basins: the Ganges, Brahmaputra and Meghna (GBM) basins. The GWAVA (Global Water AVailability Assessment) model, a global-scale gridded
The global-scale impacts of climate change on water resources and flooding under new climate and socio-economic scenarios
This paper presents a preliminary assessment of the relative effects of rate of climate change (four Representative Concentration Pathways - RCPs), assumed future population (five Shared
A cost-effectiveness analysis of water security and water quality: impacts of climate and land-use change on the River Thames system
  • P. Whitehead, J. Crossman, +7 authors D. Read
  • Environmental Science
    Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences
  • 2013
TLDR
The integrated catchments model for phosphorus (INCA-P) has been applied to the river basin and used to assess the cost-effectiveness of a range of mitigation and adaptation strategies, showing that the most effective strategy is to reduce fertilizer use by 20% together with the treatment of effluent to a high standard.
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