Overview
Gandhi Sagar is a 115 MW hydroelectric power plant in India. It is operational and contributes to the region's renewable energy capacity.
Gandhi Sagar is a hydroelectric power plant located in India, with a capacity of 115 MW. It is an operational facility that harnesses the energy of flowing water to generate electricity, supporting the country's renewable energy goals. The plant operates under India's regulatory framework for hydroelectric projects, which includes environmental clearance and water use agreements. Hydroelectric power is a mature technology in India, and plants like Gandhi Sagar play a key role in balancing the grid with flexible generation. As a renewable energy source, Gandhi Sagar helps reduce reliance on fossil fuels and contributes to lower carbon emissions. Its operation supports local electricity supply and grid stability, aligning with India's targets for increasing renewable energy capacity.
Environmental context
Hydroelectric power generation has a low carbon footprint but can affect local aquatic ecosystems and water flow regimes. The Gandhi Sagar plant's location in central India involves considerations for riverine habitats and downstream water availability. Proper management of water releases and fish passage can mitigate ecological impacts.
Frequently asked questions
Gandhi Sagar hydroelectric power plant is located in India, with coordinates approximately 24.6997° N, 75.5529° E.
Gandhi Sagar power plant has a capacity of 115 megawatts (MW), making it a medium-scale hydroelectric facility.
Gandhi Sagar is a hydroelectric power plant, which generates electricity by converting the energy of flowing water into electrical power.
Hydroelectric plants in India are subject to environmental clearance from the Ministry of Environment, Forest and Climate Change, as well as water use agreements and compliance with the Electricity Act, 2003.
Hydroelectric power provides flexible and renewable electricity, helping India meet its growing energy demand while reducing greenhouse gas emissions. It also supports grid stability and peak load management.