Environmental flows (EF) are an important component of Goal 6 (the ‘water goal’) of the Sustainable Development Goals (SDGs). Yet, many countries still do not have well-defined criteria on how to define EF. In this study, we bring together the International Water Management Institute’s (IWMI’s) e...
Sood, Aditya
,
Smakhtin, Vladimir U.
,
Eriyagama, Nishadi
,
Villholth, Karen G.
,
Liyanage, Nirosha
,
Wada, Y.
,
Ebrahim, Girma Yimer
,
Dickens, Chris
,
[Global environmental flow information for the sustainable development goals]
,
Global environmental flow information for the sustainable development goals
The concept of ‘Underground Taming of Floods for Irrigation’ (UTFI) is introduced as an approach for co-managing floods and droughts at the river basin scale. UTFI involves strategic recharge of aquifers upstream during periods of high flow, thereby preventing local and downstream flooding, and s...
Pavelic, Paul
,
Brindha, Karthikeyan
,
Amarnath, Giriraj
,
Eriyagama, Nishadi
,
Muthuwatta, Lal P.
,
Smakhtin, Vladimir U.
,
Gangopadhyay, Prasun K.
,
Malik, Ravinder Paul Singh
,
Mishra, Atmaram
,
Sharma, Bharat R.
,
Hanjra, Munir A.
,
Reddy, R.V.
,
Mishra, V.K.
,
Verma, C.L.
,
Kant, L.
,
[Controlling floods and droughts through underground storage: from concept to pilot implementation in the Ganges River Basin]
,
Controlling floods and droughts through underground storage: from concept to pilot implementation in the Ganges River Basin
The concept of ‘Underground Taming of Floods for Irrigation’ (UTFI) is introduced as an approach for co-managing floods and droughts at the river basin scale. UTFI involves strategic recharge of aquifers upstream during periods of high flow, thereby preventing local and downstream flooding, and s...
Pavelic, Paul
,
Brindha, Karthikeyan
,
Amarnath, Giriraj
,
Eriyagama, Nishadi
,
Muthuwatta, Lal P.
,
Smakhtin, Vladimir U.
,
Gangopadhyay, Prasun K.
,
Malik, Ravinder Paul Singh
,
Mishra, Atmaram
,
Sharma, Bharat R.
,
Hanjra, Munir A.
,
Reddy, R.V.
,
Mishra, V.K.
,
Verma, C.L.
,
Kant, L.
,
[Controlling floods and droughts through underground storage: from concept to pilot implementation in the Ganges River Basin]
,
Controlling floods and droughts through underground storage: from concept to pilot implementation in the Ganges River Basin
Hoanh, Chu Thai
,
Johnston, Robyn M.
,
Smakhtin, Vladimir U.
,
[Climate change and agricultural water management in developing countries]
,
Climate change and agricultural water management in developing countries
Bharati, Luna
,
Sharma, Bharat R.
,
Smakhtin, Vladimir U.
,
[The Ganges River Basin: status and challenges in water, environment and livelihoods]
,
The Ganges River Basin: status and challenges in water, environment and livelihoods
Williams, Timothy O.
,
Mul, Marloes L.
,
Biney, C.A.
,
Smakhtin, Vladimir U.
,
[The Volta River Basin: water for food, economic growth and environment]
,
The Volta River Basin: water for food, economic growth and environment
Although the Ganges River Basin (GRB) has abundant water resources, the seasonal monsoon causes a mismatch in water supply and demand, which creates severe water-related challenges for the people living in the basin, the rapidly growing economy and the environment. Addressing these increasing cha...
Amarasinghe, Upali A.
,
Muthuwatta, Lal P.
,
Smakhtin, Vladimir U.
,
Surinaidu, Lagudu
,
Natarajan, R.
,
Chinnasamy, Pennan
,
Kakumanu, Krishna Reddy
,
Prathapar, Sanmugam A.
,
Jain, S.K.
,
Ghosh, N.C.
,
Singh, S.
,
Sharma, A.
,
Jain, S.K.
,
Kumar, S.
,
Goel, M.K.
,
[Reviving the Ganges water machine: potential and challenges to meet increasing water demand in the Ganges River Basin]
,
Reviving the Ganges water machine: potential and challenges to meet increasing water demand in the Ganges River Basin
Smakhtin, Vladimir U.
,
Johnston, R.
,
[Hydrological models bring clarity and consensus to challenging policy issues.]
,
Hydrological models bring clarity and consensus to challenging policy issues.
This paper assesses the potential loss of irrigation benefits in reallocating water from irrigation to meet requirements for environmental flows (e-flows) in the Upper Ganga Basin (UGB) in northern India. The minimum requirement for e-flows in the UGB is 32 billion cubic meters (BCM), or 42 % of ...
Amarasinghe, Upali A.
,
Smakhtin, Vladimir U.
,
Bharati, Luna
,
Malik, Ravinder Paul Singh
,
[Reallocating water from canal irrigation for environmental flows: benefits forgone in the Upper Ganga Basin in India.]
,
Reallocating water from canal irrigation for environmental flows: benefits forgone in the Upper Ganga Basin in India.