Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Climate change and effectiveness of dams in flood mitigation in India

View through CrossRef
Abstract India is the third largest dam-building nation in the world. Dams are critical in irrigation, hydropower generation, and flood control. Observational evidence suggests that dams mitigated and caused floods in several river basins in India. However, the effectiveness of dams in flood mitigation and associated driving factors remain unexplored under the current and projected future climate. Using in-situ and satellite observations and simulations from hydrological and hydrodynamic models for 178 major dams, we show that major dams' effectiveness in flood mitigation in India depends more on the antecedent reservoir storage than precipitation variability in the river basins upstream of dams. Most floods in dams' downstream regions occur when reservoirs exceed 90% of their full capacity. Dams are more effective in mitigating floods in July than in the later part of the summer monsoon season. The number of days with reservoir storage over 90% of total capacity is projected to rise considerably under the warming climate, limiting dams' effectiveness in mitigating floods. The duration with reservoir storage exceeding 90% of the total capacity is projected to rise from ~ 6 days at 1°C to 23 at 3°C global warming levels, highlighting the need for climate change mitigation. The substantial rise in compound extremes of high inflow and high antecedent storage in the future under the warming climate will limit the effectiveness of dams in mitigating floods in India. Our findings highlight the need for more advanced approaches for dam operations integrated with early warning of extreme inflow and reservoir storage in India.
Springer Science and Business Media LLC
Title: Climate change and effectiveness of dams in flood mitigation in India
Description:
Abstract India is the third largest dam-building nation in the world.
Dams are critical in irrigation, hydropower generation, and flood control.
Observational evidence suggests that dams mitigated and caused floods in several river basins in India.
However, the effectiveness of dams in flood mitigation and associated driving factors remain unexplored under the current and projected future climate.
Using in-situ and satellite observations and simulations from hydrological and hydrodynamic models for 178 major dams, we show that major dams' effectiveness in flood mitigation in India depends more on the antecedent reservoir storage than precipitation variability in the river basins upstream of dams.
Most floods in dams' downstream regions occur when reservoirs exceed 90% of their full capacity.
Dams are more effective in mitigating floods in July than in the later part of the summer monsoon season.
The number of days with reservoir storage over 90% of total capacity is projected to rise considerably under the warming climate, limiting dams' effectiveness in mitigating floods.
The duration with reservoir storage exceeding 90% of the total capacity is projected to rise from ~ 6 days at 1°C to 23 at 3°C global warming levels, highlighting the need for climate change mitigation.
The substantial rise in compound extremes of high inflow and high antecedent storage in the future under the warming climate will limit the effectiveness of dams in mitigating floods in India.
Our findings highlight the need for more advanced approaches for dam operations integrated with early warning of extreme inflow and reservoir storage in India.

Related Results

“The Earth Is Dying, Bro”
“The Earth Is Dying, Bro”
Climate Change and Children Australian children are uniquely situated in a vast landscape that varies drastically across locations. Spanning multiple climatic zones—from cool tempe...
Climate and Culture
Climate and Culture
Climate is, presently, a heatedly discussed topic. Concerns about the environmental, economic, political and social consequences of climate change are of central interest in academ...
Adaptation of storm sewer systems to climate change
Adaptation of storm sewer systems to climate change
According to the United Nations (2017), more than the half of the world’s population lives in urban and semi-urban areas. As a result, urban areas are becoming larger, denser and m...
Ethics of climate change : a normative account
Ethics of climate change : a normative account
Consider, for instance, you and your family have lived around a place where you enjoyed the flora and fauna of the land as well as the natural environment. Fishing and farming were...
Rhine Cities - Urban Flood Integration (UFI): German and Dutch Adaptation and Mitigation Strategies
Rhine Cities - Urban Flood Integration (UFI): German and Dutch Adaptation and Mitigation Strategies
While agglomerations along the Rhine are confronted with the uncertainties of an increasing flood risk due to climate change, different programs are claiming urban river front site...
ASP Flood After a Polymer Flood vs. ASP Flood After a Water Flood
ASP Flood After a Polymer Flood vs. ASP Flood After a Water Flood
Abstract Alkaline-surfactant-polymer (ASP) flooding is an effective technique to improve oil recovery. It has been applied typically after a water flood. Recently, t...
Modeling Uncertainty of Copula-based Joint Return Period of Flood Events under Climate Change
Modeling Uncertainty of Copula-based Joint Return Period of Flood Events under Climate Change
Modeling the joint behavior of flood characteristics under climate change is necessary for understanding the potential changes in associated flood risk and hazards. In this study, ...

Back to Top