Overview
RADHANAGRI is a 4.8 MW hydroelectric power plant located in India. It is operational and contributes to the region's renewable energy capacity.
RADHANAGRI is a hydroelectric power plant situated in India, with a capacity of 4.8 MW. As a small-scale hydro facility, it plays a role in the country's renewable energy mix, supporting grid stability and local power supply. The plant operates under India's regulatory framework for hydropower, which includes environmental clearance from the Ministry of Environment, Forest and Climate Change (MoEFCC) and compliance with the Dam Safety Act. Small hydro projects like this often benefit from preferential tariffs and renewable energy certificates under the National Electricity Policy. Hydroelectric plants like RADHANAGRI provide low-carbon electricity and can offer ancillary services such as peaking power and grid balancing. The facility's location in a region with adequate water resources supports its operational reliability and contributes to India's goals for increasing renewable energy capacity.
Environmental context
The plant's hydroelectric operation has a low carbon footprint compared to fossil fuel plants. However, it may affect local aquatic ecosystems and water flow regimes. The facility's small capacity suggests limited environmental impact, but proximity to populated areas could influence local water use and biodiversity.
Frequently asked questions
RADHANAGRI is located in India, with coordinates 16.4072 N, 73.9616 E.
RADHANAGRI has a capacity of 4.8 megawatts (MW), classifying it as a small hydroelectric facility.
Yes, RADHANAGRI is listed as operational.
Hydroelectric plants in India must obtain environmental clearance from the Ministry of Environment, Forest and Climate Change (MoEFCC) and comply with the Dam Safety Act. They also operate under the National Electricity Policy and may receive renewable energy incentives.
Hydroelectric power is a renewable, low-carbon energy source that reduces reliance on fossil fuels. It provides grid stability and can support peak demand, though it may impact local aquatic ecosystems.